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Quantum Dissipative Systems by U. Weiss
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1Effect Of Bath Temperature On The Decoherence Of Quantum Dissipative Systems
By Wei Wu and Hai-Qing Lin
We report an anomalous decoherence phenomenon of a quantum dissipative system in the framework of a stochastic decoupling scheme along with a hierarchical equations-of-motion formalism without the usual Born-Markov or weak coupling approximations. It is found that the decoherence of a two-qubit spin-boson model can be reduced by increasing the bath temperature in strong-coupling regimes. For the weak-coupling situation, we find that the bath temperature may enhance the decoherence. This result is contrary to the common recognition that a higher bath temperature always induces a more severe decoherence and suggests that a decoherence dynamical transition occurs in this two-qubit spin-boson model. We also demonstrate that the critical transition point can be characterized by the behavior of the frequency spectrum of the quantum coherence indicator.
“Effect Of Bath Temperature On The Decoherence Of Quantum Dissipative Systems” Metadata:
- Title: ➤ Effect Of Bath Temperature On The Decoherence Of Quantum Dissipative Systems
- Authors: Wei WuHai-Qing Lin
Edition Identifiers:
- Internet Archive ID: arxiv-1612.05338
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20457 Book Classical And Quantum Dissipative Systems
We report an anomalous decoherence phenomenon of a quantum dissipative system in the framework of a stochastic decoupling scheme along with a hierarchical equations-of-motion formalism without the usual Born-Markov or weak coupling approximations. It is found that the decoherence of a two-qubit spin-boson model can be reduced by increasing the bath temperature in strong-coupling regimes. For the weak-coupling situation, we find that the bath temperature may enhance the decoherence. This result is contrary to the common recognition that a higher bath temperature always induces a more severe decoherence and suggests that a decoherence dynamical transition occurs in this two-qubit spin-boson model. We also demonstrate that the critical transition point can be characterized by the behavior of the frequency spectrum of the quantum coherence indicator.
“0457 Book Classical And Quantum Dissipative Systems” Metadata:
- Title: ➤ 0457 Book Classical And Quantum Dissipative Systems
Edition Identifiers:
- Internet Archive ID: ➤ 0457-book-classical-and-quantum-dissipative-systems
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3Dissipative Quantum Systems Modeled By A Two Level Reservoir Coupling
By A. O. Caldeira, A. H. Castro Neto and T. Oliveira de Carvalho
The coupling between a quantum dynamical system and a two-level system reservoir is analysed within the framework of the Feynman-Vernon theory. We stress the differences between this new reservoir and the well-known bath of oscillators and show that, in order to obtain the Langevin equation for the system of interest in the high temperature regime, we have to choose a spectral distribution function $J(\omega)$ which is finite for $\omega=0$.
“Dissipative Quantum Systems Modeled By A Two Level Reservoir Coupling” Metadata:
- Title: ➤ Dissipative Quantum Systems Modeled By A Two Level Reservoir Coupling
- Authors: A. O. CaldeiraA. H. Castro NetoT. Oliveira de Carvalho
- Language: English
Edition Identifiers:
- Internet Archive ID: arxiv-cond-mat9308038
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4Quantum Dissipative Systems
By Weiss, U. (Ulrich)
The coupling between a quantum dynamical system and a two-level system reservoir is analysed within the framework of the Feynman-Vernon theory. We stress the differences between this new reservoir and the well-known bath of oscillators and show that, in order to obtain the Langevin equation for the system of interest in the high temperature regime, we have to choose a spectral distribution function $J(\omega)$ which is finite for $\omega=0$.
“Quantum Dissipative Systems” Metadata:
- Title: Quantum Dissipative Systems
- Author: Weiss, U. (Ulrich)
- Language: English
“Quantum Dissipative Systems” Subjects and Themes:
- Subjects: ➤ Quantum theory - Mathematical physics - Thermodynamics - Path integrals - Quantentheorie - Dissipatives System - Quantenstatistik - Théorie quantique - Structures dissipatives - SCIENCE / Physics / General
Edition Identifiers:
- Internet Archive ID: quantumdissipati0000weis_2ed
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5The Geometry And Thermodynamics Of Dissipative Quantum Systems
By Hans Christian Öttinger
Dirac's method of classical analogy is employed to incorporate quantum degrees of freedom into modern nonequilibrium thermodynamics. The proposed formulation of dissipative quantum mechanics builds entirely upon the geometric structures implied by commutators and canonical correlations. A lucid formulation of a nonlinear quantum master equation follows from the thermodynamic structure. Complex classical environments with internal structure can be handled readily.
“The Geometry And Thermodynamics Of Dissipative Quantum Systems” Metadata:
- Title: ➤ The Geometry And Thermodynamics Of Dissipative Quantum Systems
- Author: Hans Christian Öttinger
- Language: English
Edition Identifiers:
- Internet Archive ID: arxiv-1002.2938
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6U(1) And SU(2) Quantum Dissipative Systems: The Caldeira-Leggett Vs. The Amegaokar-Eckern-Sch\"on Approaches
By Alexander Shnirman, Arijit Saha, Igor S. Burmistrov, Mikhail N. Kiselev, Alexander Altland and Yuval Gefen
There are two paradigmatic frameworks for treating quantum systems coupled to a dissipative environment: the Caldeira-Leggett and the Ambegaokar-Eckern-Sch\"on approaches. Here we recall the differences between them, and explain the consequences when each is applied to a zero dimensional spin (possessing an SU(2) symmetry) in a dissipative environment (a dissipative quantum dot near or beyond the Stoner instability point).
“U(1) And SU(2) Quantum Dissipative Systems: The Caldeira-Leggett Vs. The Amegaokar-Eckern-Sch\"on Approaches” Metadata:
- Title: ➤ U(1) And SU(2) Quantum Dissipative Systems: The Caldeira-Leggett Vs. The Amegaokar-Eckern-Sch\"on Approaches
- Authors: ➤ Alexander ShnirmanArijit SahaIgor S. BurmistrovMikhail N. KiselevAlexander AltlandYuval Gefen
- Language: English
“U(1) And SU(2) Quantum Dissipative Systems: The Caldeira-Leggett Vs. The Amegaokar-Eckern-Sch\"on Approaches” Subjects and Themes:
- Subjects: ➤ Mesoscale and Nanoscale Physics - Condensed Matter
Edition Identifiers:
- Internet Archive ID: arxiv-1508.00807
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7DTIC ADA250895: Quantum Transport, Noise And Non-Linear Dissipative Effects In One- And Two-Dimensional Systems And Associated Sub-Micron And Nanostructure Devices
By Defense Technical Information Center
The underlying theme of most of our research has been transport and noise phenomena in sub-micron systems and devices. This subject is of interest for both basic and technological reasons and it is now well-recognized that many interesting quantum phenomena come into play in the so-called mesoscopic regime. Whereas in the past we placed emphasis on the development of optimum techniques, our present thrust has been geared toward applications of same. The main thrust of the research was concerned with semiconductor quantum wires and special emphasis was placed on analyzing the relevant experiments.
“DTIC ADA250895: Quantum Transport, Noise And Non-Linear Dissipative Effects In One- And Two-Dimensional Systems And Associated Sub-Micron And Nanostructure Devices” Metadata:
- Title: ➤ DTIC ADA250895: Quantum Transport, Noise And Non-Linear Dissipative Effects In One- And Two-Dimensional Systems And Associated Sub-Micron And Nanostructure Devices
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA250895: Quantum Transport, Noise And Non-Linear Dissipative Effects In One- And Two-Dimensional Systems And Associated Sub-Micron And Nanostructure Devices” Subjects and Themes:
- Subjects: ➤ DTIC Archive - O'Connell, R F - LOUISIANA STATE UNIV BATON ROUGE DEPT OF PHYSICS AND ASTRONOMY - *QUANTUM ELECTRONICS - NOISE(ELECTRICAL AND ELECTROMAGNETIC) - SUBMINIATURE ELECTRONIC EQUIPMENT
Edition Identifiers:
- Internet Archive ID: DTIC_ADA250895
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8Stable Classical Structures In Dissipative Quantum Chaotic Systems
By Lisandro A. Raviola, Gabriel G. Carlo and Alejandro M. F. Rivas
We study the stability of classical structures in chaotic systems when a dissipative quantum evolution takes place. We consider a paradigmatic model, the quantum baker map in contact with a heat bath at finite temperature. We analyze the behavior of the purity, fidelity and Husimi distributions corresponding to initial states localized on short periodic orbits (scar functions) and map eigenstates. Scar functions, that have a fundamental role in the semiclassical description of chaotic systems, emerge as very robust against environmental perturbations. This is confirmed by the study of other states localized on classical structures. Also, purity and fidelity show a complementary behavior as decoherence measures.
“Stable Classical Structures In Dissipative Quantum Chaotic Systems” Metadata:
- Title: ➤ Stable Classical Structures In Dissipative Quantum Chaotic Systems
- Authors: Lisandro A. RaviolaGabriel G. CarloAlejandro M. F. Rivas
- Language: English
Edition Identifiers:
- Internet Archive ID: arxiv-0910.0231
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9The Zeno And Anti-Zeno Effects On Decay In Dissipative Quantum Systems
By A. G. Kofman and G. Kurizki
We point out that the quantum Zeno effect, i.e., inhibition of spontaneous decay by frequent measurements, is observable only in spectrally finite reservoirs, i.e., in cavities and waveguides, using a sequence of evolution-interrupting pulses or randomly-modulated CW fields. By contrast, such measurements can only accelerate decay in free space.
“The Zeno And Anti-Zeno Effects On Decay In Dissipative Quantum Systems” Metadata:
- Title: ➤ The Zeno And Anti-Zeno Effects On Decay In Dissipative Quantum Systems
- Authors: A. G. KofmanG. Kurizki
- Language: English
Edition Identifiers:
- Internet Archive ID: arxiv-quant-ph9912077
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10Dissipative Time Evolution Of Observables In Non-equilibrium Statistical Quantum Systems
By Herbert Nachbagauer
We discuss differential-- versus integral--equation based methods describing out--of thermal equilibrium systems and emphasize the importance of a well defined reduction to statistical observables. Applying the projection operator approach, we investigate on the time evolution of expectation values of linear and quadratic polynomials in position and momentum for a statistical anharmonic oscillator with quartic potential. Based on the exact integro-differential equations of motion, we study the first and naive second order approximation which breaks down at secular time-scales. A method is proposed to improve the expansion by a non--perturbative resummation of all quadratic operator correlators consistent with energy conservation for all times. Motion cannot be described by an effective Hamiltonian local in time reflecting non-unitarity of the dissipative entropy generating evolution. We numerically integrate the consistently improved equations of motion for large times. We relate entropy to the uncertainty product, both being expressible in terms of the observables under consideration.
“Dissipative Time Evolution Of Observables In Non-equilibrium Statistical Quantum Systems” Metadata:
- Title: ➤ Dissipative Time Evolution Of Observables In Non-equilibrium Statistical Quantum Systems
- Author: Herbert Nachbagauer
- Language: English
Edition Identifiers:
- Internet Archive ID: arxiv-hep-th9807145
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11Exactly Solvable Three-level Quantum Dissipative Systems Via Bosonisation Of Fermion Gas-impurity Models
By Sol H. Jacobsen and P. D. Jarvis
We study the relationship between one-dimensional fermion gas-impurity models and quantum dissipative systems, via the method of constructive bosonisation and unitary transformation. Starting from an anisotropic Coqblin-Schrieffer model, a new, exactly solvable, three-level quantum dissipative system is derived as a generalisation of the standard spin-half spin-boson model. The new system has two environmental oscillator baths with ohmic coupling, and admits arbitrary detuning between the three levels. All tunnelling matrix elements are equal, up to one complex phase which is itself a function of the longitudinal and transverse couplings in the integrable limit. Our work underlines the importance of re-examining the detailed structure of fermion-gas impurity models and spin chains, in the light of connections to models for quantum dissipative systems.
“Exactly Solvable Three-level Quantum Dissipative Systems Via Bosonisation Of Fermion Gas-impurity Models” Metadata:
- Title: ➤ Exactly Solvable Three-level Quantum Dissipative Systems Via Bosonisation Of Fermion Gas-impurity Models
- Authors: Sol H. JacobsenP. D. Jarvis
- Language: English
Edition Identifiers:
- Internet Archive ID: arxiv-1002.1747
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12Deterministic Constant-temperature Dynamics For Dissipative Quantum Systems
By Alessandro Sergi
A novel method is introduced in order to treat the dissipative dynamics of quantum systems interacting with a bath of classical degrees of freedom. The method is based upon an extension of the Nos\`e-Hoover chain (constant temperature) dynamics to quantum-classical systems. Both adiabatic and nonadiabatic numerical calculations on the relaxation dynamics of the spin-boson model show that the quantum-classical Nos\`e-Hoover chain dynamics represents the thermal noise of the bath in an accurate and simple way. Numerical comparisons, both with the constant energy calculation and with the quantum-classical Brownian motion treatment of the bath, show that the quantum-classical Nos\`e-Hoover Chain dynamics can be used to introduce dissipation in the evolution of a quantum subsystem even with just one degree of freedom for the bath. The algorithm can be computationally advantageous in modeling, within computer simulation, the dynamics of a quantum subsystem interacting with complex molecular environments.
“Deterministic Constant-temperature Dynamics For Dissipative Quantum Systems” Metadata:
- Title: ➤ Deterministic Constant-temperature Dynamics For Dissipative Quantum Systems
- Author: Alessandro Sergi
- Language: English
Edition Identifiers:
- Internet Archive ID: arxiv-quant-ph0701242
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13Classical And Quantum Dissipative Systems
By Razavy, Mohsen
A novel method is introduced in order to treat the dissipative dynamics of quantum systems interacting with a bath of classical degrees of freedom. The method is based upon an extension of the Nos\`e-Hoover chain (constant temperature) dynamics to quantum-classical systems. Both adiabatic and nonadiabatic numerical calculations on the relaxation dynamics of the spin-boson model show that the quantum-classical Nos\`e-Hoover chain dynamics represents the thermal noise of the bath in an accurate and simple way. Numerical comparisons, both with the constant energy calculation and with the quantum-classical Brownian motion treatment of the bath, show that the quantum-classical Nos\`e-Hoover Chain dynamics can be used to introduce dissipation in the evolution of a quantum subsystem even with just one degree of freedom for the bath. The algorithm can be computationally advantageous in modeling, within computer simulation, the dynamics of a quantum subsystem interacting with complex molecular environments.
“Classical And Quantum Dissipative Systems” Metadata:
- Title: ➤ Classical And Quantum Dissipative Systems
- Author: Razavy, Mohsen
- Language: English
“Classical And Quantum Dissipative Systems” Subjects and Themes:
- Subjects: Energy dissipation - Quantum theory - Mechanics
Edition Identifiers:
- Internet Archive ID: classicalquantum0000raza
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14Quantum Sweeps, Synchronization, And Kibble-Zurek Physics In Dissipative Quantum Spin Systems
By Loïc Henriet and Karyn Le Hur
We address dissipation effects on the non-equilibrium quantum dynamics of an ensemble of spins-1/2 coupled via an Ising interaction. Dissipation is modeled by a (ohmic) bath of harmonic oscillators at zero temperature and correspond either to the sound modes of a one-dimensional Bose-Einstein (quasi-)condensate or to the zero-point fluctuations of a long transmission line. We consider the dimer comprising two spins and the quantum Ising chain with long-range interactions, and develop a (mathematically and numerically) exact stochastic approach to address non-equilibrium protocols in the presence of an environment. For the two spin case, we first investigate the dissipative quantum phase transition induced by the environment through quantum quenches, and study the effect of the environment on the synchronization properties. Then, we address Landau-Zener-Stueckelberg-Majorana protocols for two spins, and for the spin array. In this latter case, we adopt a stochastic mean-field point of view and present a Kibble-Zurek type argument to account for interaction effects in the lattice. Such dissipative quantum spin arrays can be realized in ultra-cold atoms, trapped ions, mesoscopic systems, and are related to Kondo lattice models.
“Quantum Sweeps, Synchronization, And Kibble-Zurek Physics In Dissipative Quantum Spin Systems” Metadata:
- Title: ➤ Quantum Sweeps, Synchronization, And Kibble-Zurek Physics In Dissipative Quantum Spin Systems
- Authors: Loïc HenrietKaryn Le Hur
- Language: English
“Quantum Sweeps, Synchronization, And Kibble-Zurek Physics In Dissipative Quantum Spin Systems” Subjects and Themes:
- Subjects: Strongly Correlated Electrons - Statistical Mechanics - Quantum Physics - Condensed Matter
Edition Identifiers:
- Internet Archive ID: arxiv-1502.06863
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15Real-time Dynamics Of Open Quantum Spin Systems Driven By Dissipative Processes
By Florian Hebenstreit, Debasish Banerjee, Manes Hornung, Fu-Jiun Jiang, Franziska Schranz and Uwe-Jens Wiese
We study the real-time evolution of large open quantum spin systems in two spatial dimensions, whose dynamics is entirely driven by a dissipative coupling to the environment. We consider different dissipative processes and investigate the real-time evolution from an ordered phase of the Heisenberg or XY-model towards a disordered phase at late times, disregarding unitary Hamiltonian dynamics. The corresponding Kossakowski-Lindblad equation is solved via an efficient cluster algorithm. We find that the symmetry of the dissipative process determines the time scales which govern the approach towards a new equilibrium phase at late times. Most notably, we find a slow equilibration if the dissipative process conserves any of the magnetization Fourier modes. In these cases, the dynamics can be interpreted as a diffusion process of the conserved quantity.
“Real-time Dynamics Of Open Quantum Spin Systems Driven By Dissipative Processes” Metadata:
- Title: ➤ Real-time Dynamics Of Open Quantum Spin Systems Driven By Dissipative Processes
- Authors: ➤ Florian HebenstreitDebasish BanerjeeManes HornungFu-Jiun JiangFranziska SchranzUwe-Jens Wiese
- Language: English
“Real-time Dynamics Of Open Quantum Spin Systems Driven By Dissipative Processes” Subjects and Themes:
- Subjects: Strongly Correlated Electrons - Quantum Physics - Condensed Matter - High Energy Physics - Lattice
Edition Identifiers:
- Internet Archive ID: arxiv-1502.02980
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16Dissipative Systems And Objective Description: Quantum Brownian Motion As An Example
By Bassano Vacchini
A structure of generator of a quantum dynamical semigroup for the dynamics of a test particle interacting through collisions with the environment is considered, which has been obtained from a microphysical model. The related master-equation is shown to go over to a Fokker-Planck equation for the description of Brownian motion at quantum level in the long wavelength limit. The structure of this Fokker-Planck equation is expressed in this paper in terms of superoperators, giving explicit expressions for the coefficient of diffusion in momentum in correspondence with two cases of interest for the interaction potential. This Fokker-Planck equation gives an example of a physically motivated generator of quantum dynamical semigroup, which serves as a starting point for the theory of measurement continuous in time, allowing for the introduction of trajectories in quantum mechanics. This theory had in fact already been applied to the problem of Brownian motion referring to similar phenomenological structures obtained only on the basis of mathematical requirements.
“Dissipative Systems And Objective Description: Quantum Brownian Motion As An Example” Metadata:
- Title: ➤ Dissipative Systems And Objective Description: Quantum Brownian Motion As An Example
- Author: Bassano Vacchini
- Language: English
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- Internet Archive ID: arxiv-quant-ph0204133
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17Shot Noise Spectrum Of Open Dissipative Quantum Two-level Systems
By R. Aguado and T. Brandes
We study the current noise spectrum of qubits under transport conditions in a dissipative bosonic environment. We combine (non-)Markovian master equations with correlation functions in Laplace-space to derive a noise formula for both weak and strong coupling to the bath. The coherence-induced reduction of noise is diminished by weak dissipation and/or a large level separation (bias). For weak dissipation, we demonstrate that the dephasing and relaxation rates of the two-level system can be extracted from noise. In the strong dissipation regime, the localisation-delocalisation transition becomes visible in the low-frequency noise.
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- Title: ➤ Shot Noise Spectrum Of Open Dissipative Quantum Two-level Systems
- Authors: R. AguadoT. Brandes
- Language: English
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- Internet Archive ID: arxiv-cond-mat0310578
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18Dynamical Response Theory For Driven-Dissipative Quantum Systems
By Lorenzo Campos Venuti and Paolo Zanardi
We discuss dynamical response theory of driven-dissipative quantum systems described by Markovian Master Equations generating semi-groups of maps. In this setting thermal equilibrium states are replaced by non-equilibrium steady states and dissipative perturbations are considered besides the Hamiltonian ones. We derive explicit expressions for the linear dynamical response functions for generalized dephasing channels and for Davies thermalizing generators. We introduce the notion of maximal harmonic response and compute it exactly for a single qubit channel. Finally, we analyze linear response near dynamical phase transitions in quasi-free open quantum systems. It is found that the effect of the dynamical phase transition shows up in a peak at the edge of the spectrum in the imaginary part of the dynamical response function.
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- Title: ➤ Dynamical Response Theory For Driven-Dissipative Quantum Systems
- Authors: Lorenzo Campos VenutiPaolo Zanardi
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- Internet Archive ID: arxiv-1512.07860
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19Thermodynamics Of Dissipative Quantum Systems By Effective Potential
We discuss dynamical response theory of driven-dissipative quantum systems described by Markovian Master Equations generating semi-groups of maps. In this setting thermal equilibrium states are replaced by non-equilibrium steady states and dissipative perturbations are considered besides the Hamiltonian ones. We derive explicit expressions for the linear dynamical response functions for generalized dephasing channels and for Davies thermalizing generators. We introduce the notion of maximal harmonic response and compute it exactly for a single qubit channel. Finally, we analyze linear response near dynamical phase transitions in quasi-free open quantum systems. It is found that the effect of the dynamical phase transition shows up in a peak at the edge of the spectrum in the imaginary part of the dynamical response function.
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20Variational Matrix Product Operators For The Steady State Of Dissipative Quantum Systems
By Jian Cui, J. Ignacio Cirac and Mari Carmen Bañuls
We present a new variational method, based on the matrix product operator (MPO) ansatz, for finding the steady state of dissipative quantum chains governed by master equations of the Lindblad form. Instead of requiring an accurate representation of the system evolution until the stationary state is attained, the algorithm directly targets the final state, thus allowing for a faster convergence when the steady state is a MPO with small bond dimension. Our numerical simulations for several dissipative spin models over a wide range of parameters illustrate the performance of the method and show that indeed the stationary state is often well described by a MPO of very moderate dimensions.
“Variational Matrix Product Operators For The Steady State Of Dissipative Quantum Systems” Metadata:
- Title: ➤ Variational Matrix Product Operators For The Steady State Of Dissipative Quantum Systems
- Authors: Jian CuiJ. Ignacio CiracMari Carmen Bañuls
- Language: English
“Variational Matrix Product Operators For The Steady State Of Dissipative Quantum Systems” Subjects and Themes:
- Subjects: Quantum Physics - Statistical Mechanics - Condensed Matter - Strongly Correlated Electrons
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- Internet Archive ID: arxiv-1501.06786
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21Optimal Decoherence Control In Non-Markovian Open, Dissipative Quantum Systems
By Wei Cui, Zairong Xi and Yu Pan
We investigate the optimal control problem for non-Markovian open, dissipative quantum system. Optimal control using Pontryagin maximum principle is specifically derived. The influences of Ohmic reservoir with Lorentz-Drude regularization are numerically studied in a two-level system under the following three conditions: \omega_0\ll\omega_c, \omega_0\approx\omega_c or \omega_0\gg\omega_c, where \omega_0 is the characteristic frequency of the quantum system of interest, and \omega_c the cut-off frequency of Ohmic reservoir. The optimal control process shows its remarkable influences on the decoherence dynamics. The temperature is a key factor in the decoherence dynamics. We analyze the optimal decoherence control in high temperature, intermediate temperature, and low temperature reservoirs respectively. It implies that designing some engineered reservoirs with the controlled coupling and state of the environment can slow down the decoherence rate and delay the decoherence time. Moreover, we compare the non-Markovian optimal decoherence control with the Markovian one and find that with non-Markovian the engineered artificial reservoirs are better than with the Markovian approximation in controlling the open, dissipative quantum system's decoherence.
“Optimal Decoherence Control In Non-Markovian Open, Dissipative Quantum Systems” Metadata:
- Title: ➤ Optimal Decoherence Control In Non-Markovian Open, Dissipative Quantum Systems
- Authors: Wei CuiZairong XiYu Pan
- Language: English
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- Internet Archive ID: arxiv-0910.5208
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22Time-Minimal Control Of Dissipative Two-level Quantum Systems: The Generic Case
By B. Bonnard, M. Chyba and D. Sugny
The objective of this article is to complete preliminary results concerning the time-minimal control of dissipative two-level quantum systems whose dynamics is governed by Lindblad equations. The extremal system is described by a 3D-Hamiltonian depending upon three parameters. We combine geometric techniques with numerical simulations to deduce the optimal solutions.
“Time-Minimal Control Of Dissipative Two-level Quantum Systems: The Generic Case” Metadata:
- Title: ➤ Time-Minimal Control Of Dissipative Two-level Quantum Systems: The Generic Case
- Authors: B. BonnardM. ChybaD. Sugny
- Language: English
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- Internet Archive ID: arxiv-0809.4138
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23Coherent Quantum Dynamics In Steady-state Manifolds Of Strongly Dissipative Systems
By Paolo Zanardi and Lorenzo Campos Venuti
It has been recently realized that dissipative processes can be harnessed and exploited to the end of coherent quantum control and information processing. In this spirit we consider strongly dissipative quantum systems admitting a non-trivial manifold of steady states. We show how one can enact adiabatic coherent unitary manipulations e.g., quantum logical gates, inside this {steady-state} manifold by adding a weak, time-rescaled, Hamiltonian term into the system's Liouvillian. The effective long-time dynamics is governed by a projected Hamiltonian which results from the interplay between the weak unitary control and the fast relaxation process. The leakage outside the {steady-state} manifold entailed by the Hamiltonian term is suppressed by an environment-induced symmetrization of the dynamics. We present applications to quantum-computation in decoherence-free subspaces and noiseless subsystems and numerical analysis of non-adiabatic errors.
“Coherent Quantum Dynamics In Steady-state Manifolds Of Strongly Dissipative Systems” Metadata:
- Title: ➤ Coherent Quantum Dynamics In Steady-state Manifolds Of Strongly Dissipative Systems
- Authors: Paolo ZanardiLorenzo Campos Venuti
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- Internet Archive ID: arxiv-1404.4673
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24Time-minimal Control Of Dissipative Two-level Quantum Systems: The Integrable Case
By B. Bonnard and D. Sugny
The objective of this article is to apply recent developments in geometric optimal control to analyze the time minimum control problem of dissipative two-level quantum systems whose dynamics is governed by the Lindblad equation. We focus our analysis on the case where the extremal Hamiltonian is integrable.
“Time-minimal Control Of Dissipative Two-level Quantum Systems: The Integrable Case” Metadata:
- Title: ➤ Time-minimal Control Of Dissipative Two-level Quantum Systems: The Integrable Case
- Authors: B. BonnardD. Sugny
- Language: English
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- Internet Archive ID: arxiv-0809.4130
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25Ordered Dissipative Structures In Exciton Systems In Semiconductor Quantum Wells
By Andrey A. Chernyuk and Volodymyr I. Sugakov
A phenomenological theory of exciton condensation in conditions of inhomogeneous excitation is proposed. The theory is applied to the study of the development of an exciton luminescence ring and the ring fragmentation at macroscopical distances from the central excitation spot in coupled quantum wells. The transition between the fragmented and the continuous ring is considered. With assumption of a defect in the structure, a possibility of a localized island of the condensed phase in a fixed position is shown. Exciton density distribution is also analyzed in the case of two spatially separated spots of the laser excitation.
“Ordered Dissipative Structures In Exciton Systems In Semiconductor Quantum Wells” Metadata:
- Title: ➤ Ordered Dissipative Structures In Exciton Systems In Semiconductor Quantum Wells
- Authors: Andrey A. ChernyukVolodymyr I. Sugakov
- Language: English
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- Internet Archive ID: arxiv-cond-mat0508282
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26Stationary States Of Dissipative Quantum Systems
By Vasily E. Tarasov
In this Letter we consider stationary states of dissipative quantum systems. We discuss stationary states of dissipative quantum systems, which coincide with stationary states of Hamiltonian quantum systems. Dissipative quantum systems with pure stationary states of linear harmonic oscillator are suggested. We discuss bifurcations of stationary states for dissipative quantum systems which are quantum analogs of classical dynamical bifurcations.
“Stationary States Of Dissipative Quantum Systems” Metadata:
- Title: ➤ Stationary States Of Dissipative Quantum Systems
- Author: Vasily E. Tarasov
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- Internet Archive ID: arxiv-1107.5907
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27Quantum Dissipative Systems
By Weiss, U. (Ulrich)
In this Letter we consider stationary states of dissipative quantum systems. We discuss stationary states of dissipative quantum systems, which coincide with stationary states of Hamiltonian quantum systems. Dissipative quantum systems with pure stationary states of linear harmonic oscillator are suggested. We discuss bifurcations of stationary states for dissipative quantum systems which are quantum analogs of classical dynamical bifurcations.
“Quantum Dissipative Systems” Metadata:
- Title: Quantum Dissipative Systems
- Author: Weiss, U. (Ulrich)
- Language: English
“Quantum Dissipative Systems” Subjects and Themes:
- Subjects: Quantum theory - Mathematical physics - Thermodynamics - Path integrals
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- Internet Archive ID: quantumdissipati0002weis
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28Quantum Ratchets In Dissipative Chaotic Systems
By Gabriel G. Carlo, Giuliano Benenti, Giulio Casati and Dima L. Shepelyansky
Using the method of quantum trajectories we study a quantum chaotic dissipative ratchet appearing for particles in a pulsed asymmetric potential in the presence of a dissipative environment. The system is characterized by directed transport emerging from a quantum strange attractor. This model exhibits, in the limit of small effective Planck constant, a transition from quantum to classical behavior, in agreement with the correspondence principle. We also discuss parameter values suitable for implementation of the quantum ratchet effect with cold atoms in optical lattices.
“Quantum Ratchets In Dissipative Chaotic Systems” Metadata:
- Title: ➤ Quantum Ratchets In Dissipative Chaotic Systems
- Authors: Gabriel G. CarloGiuliano BenentiGiulio CasatiDima L. Shepelyansky
- Language: English
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- Internet Archive ID: arxiv-cond-mat0407702
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29The Existence Problem For Dynamics Of Dissipative Systems In Quantum Probability
By Palle E. T. Jorgensen
Motivated by existence problems for dissipative systems arising naturally in lattice models from quantum statistical mechanics, we consider the following $C^{\ast}$-algebraic setting: A given hermitian dissipative mapping $\delta$ is densely defined in a unital $C^{\ast}$-algebra $\mathfrak{A}$. The identity element in ${\frak A}$ is also in the domain of $\delta$. Completely dissipative maps $\delta$ are defined by the requirement that the induced maps, $(a_{ij})\to (\delta (a_{ij}))$, are dissipative on the $n$ by $n$ complex matrices over ${\frak A}$ for all $n$. We establish the existence of different types of maximal extensions of completely dissipative maps. If the enveloping von Neumann algebra of ${\frak A}$ is injective, we show the existence of an extension of $\delta$ which is the infinitesimal generator of a quantum dynamical semigroup of completely positive maps in the von Neumann algebra. If $\delta$ is a given well-behaved *-derivation, then we show that each of the maps $\delta$ and $-\delta$ is completely dissipative.
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- Title: ➤ The Existence Problem For Dynamics Of Dissipative Systems In Quantum Probability
- Author: Palle E. T. Jorgensen
- Language: English
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- Internet Archive ID: arxiv-math0207084
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30Dynamically Contracted Algebra Of Observables For Dissipative Quantum Systems
By Sahar Alipour, Dariusz Chruściński, Paolo Facchi, Giuseppe Marmo, Saverio Pascazio and Ali T. Rezakhani
A method is discussed to analyze the dynamics of a dissipative quantum system. The method hinges upon the definition of an alternative (time-dependent) product among the observables of the system. In the long time limit this yields a contracted algebra. This contraction irreversibly affects some of the quantum features of the dissipative system.
“Dynamically Contracted Algebra Of Observables For Dissipative Quantum Systems” Metadata:
- Title: ➤ Dynamically Contracted Algebra Of Observables For Dissipative Quantum Systems
- Authors: ➤ Sahar AlipourDariusz ChruścińskiPaolo FacchiGiuseppe MarmoSaverio PascazioAli T. Rezakhani
“Dynamically Contracted Algebra Of Observables For Dissipative Quantum Systems” Subjects and Themes:
- Subjects: Quantum Physics - Mathematical Physics - Mathematics
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- Internet Archive ID: arxiv-1511.08132
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31Time-evolution Of Quantum Systems Via A Complex Nonlinear Riccati Equation II. Dissipative Systems
By Hans Cruz, Dieter Schuch, Octavio Castanos and Oscar Rosas-Ortiz
In our former contribution [Ann. Phys. 360 (2015) 44], we have shown the sensitivity to the choice of initial conditions in the evolution of Gaussian wave packets via the nonlinear Riccati equation. The formalism developed in the previous work is extended to effective approaches for the description of dissipative quantum systems. By means of simple examples we show the effects of the environment on the quantum uncertainties, correlation function, quantum energy contribution and tunneling currents. We prove that the environmental parameter $\gamma$ is strongly related with the sensitivity to the choice of initial conditions.
“Time-evolution Of Quantum Systems Via A Complex Nonlinear Riccati Equation II. Dissipative Systems” Metadata:
- Title: ➤ Time-evolution Of Quantum Systems Via A Complex Nonlinear Riccati Equation II. Dissipative Systems
- Authors: Hans CruzDieter SchuchOctavio CastanosOscar Rosas-Ortiz
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- Internet Archive ID: arxiv-1602.02314
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32Modular Dynamical Semigroups For Quantum Dissipative Systems
By David Taj and Hans Christian Öttinger
We introduce a class of Markovian quantum master equations, able to describe the dissipative dynamics of a quantum system weakly coupled to one or several heat baths. The dissipative structure is driven by an entropic operator, the so called modular Hamiltonian, which makes it nonlinear. The generated Modular Dynamical Semigroup (MDS) is not, in general, a Quantum Dynamical Semigroup (QDS), whose dynamics is of the popular Lindblad type. The MDS has a robust thermodynamic structure, which guarantees for the positivity of the time evolved state, the correct steady state properties, the positivity of the entropy production, a positive Onsager matrix and Onsager symmetry relations (arising from Green-Kubo formulas). We show that the celebrated Davies generator, obtained through the Born and the secular approximations, generates a MDS. By unravelling the modular structure of the former, we provide a different and genuinely nonlinear MDS, not of QDS type, which is free from the severe spectral restrictions of the Davies generator, while still being supported by a weak coupling limit argument. With respect to the latter, the present work is a substantial extension of \cite{Ottinger2011_GEO,Ottinger2010_TLS_DHO}
“Modular Dynamical Semigroups For Quantum Dissipative Systems” Metadata:
- Title: ➤ Modular Dynamical Semigroups For Quantum Dissipative Systems
- Authors: David TajHans Christian Öttinger
- Language: English
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- Internet Archive ID: arxiv-1503.02602
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33Dissipative Effects On Quantum Glassy Systems
By Leticia F. Cugliandolo, Daniel Grempel, Gustavo Lozano, Homero Lozza and Constantino da Silva Santos
We discuss the behavior of a quantum glassy system coupled to a bath of quantum oscillators. We show that the system localizes in the absence of interactions when coupled to a subOhmic bath. When interactions are switched on localization disappears and the system undergoes a phase transition towards a glassy phase. We show that the position of the critical line separating the disordered and the ordered phases strongly depends on the coupling to the bath. For a given type of bath, the ordered glassy phase is favored by a stronger coupling. Ohmic, subOhmic and superOhmic baths lead to different transition lines. We draw our conclusions from the analysis of the partition function using the replicated imaginary-time formalism and from the study of the real-time dynamics of the coupled system using the Schwinger-Keldysh closed time-path formalism.
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- Title: ➤ Dissipative Effects On Quantum Glassy Systems
- Authors: Leticia F. CugliandoloDaniel GrempelGustavo LozanoHomero LozzaConstantino da Silva Santos
- Language: English
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- Internet Archive ID: arxiv-cond-mat0110497
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34Hartman Effect And Dissipative Quantum Systems
By Samyadeb Bhattacharya and Sisir Roy
The dwell time for dissipative quantum system is shown to increase with barrier width. It clearly precludes Hartman effect for dissipative systems. Here calculation has been done for inverted parabolic potential barrier.
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- Title: ➤ Hartman Effect And Dissipative Quantum Systems
- Authors: Samyadeb BhattacharyaSisir Roy
- Language: English
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- Internet Archive ID: arxiv-1209.0993
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35Non-Markovian Expansion In Quantum Dissipative Systems
By E. S. Fraga, G. Krein and L. F. Palhares
We consider the non-Markovian Langevin evolution of a dissipative dynamical system in quantum mechanics in the path integral formalism. After discussing the role of the frequency cutoff for the interaction of the system with the heat bath and the kernel and noise correlator that follow from the most common choices, we derive an analytic expansion for the exact non-Markovian dissipation kernel and the corresponding colored noise in the general case that is consistent with the fluctuation-dissipation theorem and incorporates systematically non-local corrections. We illustrate the modifications to results obtained using the traditional (Markovian) Langevin approach in the case of the exponential kernel and analyze the case of the non-Markovian Brownian motion.
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- Title: ➤ Non-Markovian Expansion In Quantum Dissipative Systems
- Authors: E. S. FragaG. KreinL. F. Palhares
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- Internet Archive ID: arxiv-0910.4369
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36Low Temperature Equilibrium Correlation Functions In Dissipative Quantum Systems
By Stefan K. Kehrein and Andreas Mielke
We introduce a new theoretical approach to dissipative quantum systems. By means of a continuous sequence of infinitesimal unitary transformations, we decouple the small quantum system that one is interested in from its thermodynamically large environment. This yields a trivial final transformed Hamiltonian. Dissipation enters through the observation that generically observables ``decay'' completely under these unitary transformations, i.e. are completely transformed into other terms. As a nontrivial example the spin-boson model is discussed in some detail. For the super-Ohmic bath we obtain a very satisfactory description of short, intermediate and long time scales at small temperatures. This can be tested from the generalized Shiba-relation that is fulfilled within numerical errors.
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- Title: ➤ Low Temperature Equilibrium Correlation Functions In Dissipative Quantum Systems
- Authors: Stefan K. KehreinAndreas Mielke
- Language: English
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- Internet Archive ID: arxiv-cond-mat9607160
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37Phase Diffusion In Quantum Dissipative Systems
By Subhashish Banerjee and R. Srikanth
We study the dynamics of the quantum phase distribution associated with the reduced density matrix of a system for a number of situations of practical importance, as the system evolves under the influence of its environment, interacting via a quantum nondemoliton type of coupling, such that there is decoherence without dissipation, as well as when it interacts via a dissipative interaction, resulting in decoherence as well as dissipation. The system is taken to be either a two-level atom (or equivalently, a spin-1/2 system) or a harmonic oscillator, and the environment is modeled as a bath of harmonic oscillators, starting out in a squeezed thermal state. The impact of the different environmental parameters on the dynamics of the quantum phase distribution for the system starting out in various initial states, is explicitly brought out. An interesting feature that emerges from our work is that the relationship between squeezing and temperature effects depends on the type of system-bath interaction. In the case of quantum nondemolition type of interaction, squeezing and temperature work in tandem, producing a diffusive effect on the phase distribution. In contrast, in case of a dissipative interaction, the influence of temperature can be counteracted by squeezing, which manifests as a resistence to randomization of phase. We make use of the phase distributions to bring out a notion of complementarity in atomic systems. We also study the dispersion of the phase using the phase distributions conditioned on particular initial states of the system.
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- Title: ➤ Phase Diffusion In Quantum Dissipative Systems
- Authors: Subhashish BanerjeeR. Srikanth
- Language: English
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38Entanglement And Dephasing Of Quantum Dissipative Systems
We study the dynamics of the quantum phase distribution associated with the reduced density matrix of a system for a number of situations of practical importance, as the system evolves under the influence of its environment, interacting via a quantum nondemoliton type of coupling, such that there is decoherence without dissipation, as well as when it interacts via a dissipative interaction, resulting in decoherence as well as dissipation. The system is taken to be either a two-level atom (or equivalently, a spin-1/2 system) or a harmonic oscillator, and the environment is modeled as a bath of harmonic oscillators, starting out in a squeezed thermal state. The impact of the different environmental parameters on the dynamics of the quantum phase distribution for the system starting out in various initial states, is explicitly brought out. An interesting feature that emerges from our work is that the relationship between squeezing and temperature effects depends on the type of system-bath interaction. In the case of quantum nondemolition type of interaction, squeezing and temperature work in tandem, producing a diffusive effect on the phase distribution. In contrast, in case of a dissipative interaction, the influence of temperature can be counteracted by squeezing, which manifests as a resistence to randomization of phase. We make use of the phase distributions to bring out a notion of complementarity in atomic systems. We also study the dispersion of the phase using the phase distributions conditioned on particular initial states of the system.
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- Language: Catalan
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39Quantum Dissipative Systems From Theory Of Continuous Measurements
By Michael B. Mensky and Stig Stenholm
We apply the restricted-path-integral (RPI) theory of non-minimally disturbing continuous measurements for correct description of frictional Brownian motion. The resulting master equation is automatically of the Lindblad form, so that the difficulties typical of other approaches do not exist. In the special case of harmonic oscillator the known familiar master equation describing its frictionally driven Brownian motion is obtained. A thermal reservoir as a measuring environment is considered.
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- Title: ➤ Quantum Dissipative Systems From Theory Of Continuous Measurements
- Authors: Michael B. MenskyStig Stenholm
- Language: English
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40The Ubiquitous Problem Of Learning System Parameters For Dissipative Two-level Quantum Systems: Fourier Analysis Versus Bayesian Estimation
By Sophie Schirmer and Frank Langbein
We compare the accuracy, precision and reliability of different methods for estimating key system parameters for two-level systems subject to Hamiltonian evolution and decoherence. It is demonstrated that the use of Bayesian modelling and maximum likelihood estimation is superior to common techniques based on Fourier analysis. Even for simple two-parameter estimation problems, the Bayesian approach yields higher accuracy and precision for the parameter estimates obtained. It requires less data, is more flexible in dealing with different model systems, can deal better with uncertainty in initial conditions and measurements, and enables adaptive refinement of the estimates. The comparison results shows that this holds for measurements of large ensembles of spins and atoms limited by Gaussian noise as well as projection noise limited data from repeated single-shot measurements of a single quantum device.
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- Title: ➤ The Ubiquitous Problem Of Learning System Parameters For Dissipative Two-level Quantum Systems: Fourier Analysis Versus Bayesian Estimation
- Authors: Sophie SchirmerFrank Langbein
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- Internet Archive ID: arxiv-1412.4282
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41Dissipative Quantum Systems In ThermoField Dynamics
We compare the accuracy, precision and reliability of different methods for estimating key system parameters for two-level systems subject to Hamiltonian evolution and decoherence. It is demonstrated that the use of Bayesian modelling and maximum likelihood estimation is superior to common techniques based on Fourier analysis. Even for simple two-parameter estimation problems, the Bayesian approach yields higher accuracy and precision for the parameter estimates obtained. It requires less data, is more flexible in dealing with different model systems, can deal better with uncertainty in initial conditions and measurements, and enables adaptive refinement of the estimates. The comparison results shows that this holds for measurements of large ensembles of spins and atoms limited by Gaussian noise as well as projection noise limited data from repeated single-shot measurements of a single quantum device.
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- Internet Archive ID: arxiv-0911.1321
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42Area Law For Fixed Points Of Rapidly Mixing Dissipative Quantum Systems
By Fernando G. S. L. Brandao, Toby S. Cubitt, Angelo Lucia, Spyridon Michalakis and David Perez-Garcia
We prove an area law with a logarithmic correction for the mutual information for fixed points of local dissipative quantum system satisfying a rapid mixing condition, under either of the following assumptions: the fixed point is pure, or the system is frustration free.
“Area Law For Fixed Points Of Rapidly Mixing Dissipative Quantum Systems” Metadata:
- Title: ➤ Area Law For Fixed Points Of Rapidly Mixing Dissipative Quantum Systems
- Authors: Fernando G. S. L. BrandaoToby S. CubittAngelo LuciaSpyridon MichalakisDavid Perez-Garcia
- Language: English
“Area Law For Fixed Points Of Rapidly Mixing Dissipative Quantum Systems” Subjects and Themes:
- Subjects: Quantum Physics - Information Theory - Computing Research Repository - Mathematical Physics - Mathematics
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- Internet Archive ID: arxiv-1505.02776
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43Two-time Correlations Probing The Dynamics Of Dissipative Many-Body Quantum Systems: Aging And Fast Relaxation
By Bruno Sciolla, Dario Poletti and Corinna Kollath
Two-time correlations are a crucial tool to probe the dynamics of many-body systems. We use these correlation functions to study the dynamics of dissipative quantum systems. Extending the adiabatic elimination method, we show that the correlations can display two distinct behaviors, depending on the observable of interest: a fast exponential decay, with a timescale of the order of the dissipative coupling, or a much slower dynamics. We apply this formalism to bosons in a double well subjected to phase noise. While the single-particle correlations decay exponentially, the density-density correlations display slow aging dynamics. We also show that the two-time correlations of dissipatively engineered quantum states can evolve in a drastically different manner compared to their Hamiltonian counterparts.
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- Title: ➤ Two-time Correlations Probing The Dynamics Of Dissipative Many-Body Quantum Systems: Aging And Fast Relaxation
- Authors: Bruno SciollaDario PolettiCorinna Kollath
“Two-time Correlations Probing The Dynamics Of Dissipative Many-Body Quantum Systems: Aging And Fast Relaxation” Subjects and Themes:
- Subjects: Quantum Gases - Quantum Physics - Condensed Matter
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- Internet Archive ID: arxiv-1407.4939
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44Quantum Metrology In Open Systems: A Dissipative Cramér-Rao Bound
By S. Alipour, M. Mehboudi and A. T. Rezakhani
Estimation of parameters is a pivotal task throughout science and technology. Quantum Cram\'{e}r-Rao bound provides a fundamental limit of precision allowed to achieve under quantum theory. For closed quantum systems, it has been shown how the estimation precision depends on the underlying dynamics. Here, we propose a general formulation for metrology scenarios in open quantum systems, aiming to relate the precision more directly to properties of the underlying dynamics. Specifically, we derive a Cram\'{e}r-Rao bound for a fairly large class of open system dynamics, which is governed by a (time-dependent) dynamical semi-group map. We illustrate the utility of this scenario through three examples.
“Quantum Metrology In Open Systems: A Dissipative Cramér-Rao Bound” Metadata:
- Title: ➤ Quantum Metrology In Open Systems: A Dissipative Cramér-Rao Bound
- Authors: S. AlipourM. MehboudiA. T. Rezakhani
- Language: English
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- Internet Archive ID: arxiv-1302.1115
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45Deconstructing Non-dissipative Non-Dirac-hermitian Relativistic Quantum Systems
By Pijush K. Ghosh
A method to construct non-dissipative non-Dirac-hermitian relativistic quantum system that is isospectral with a Dirac-hermitian Hamiltonian is presented. The general technique involves a realization of the basic canonical (anti-)commutation relations involving the Dirac matrices and the bosonic degrees of freedom in terms of non-Dirac-hermitian operators, which are hermitian in a Hilbert space that is endowed with a pre-determined positive-definite metric. Several examples of exactly solvable non-dissipative non-Dirac-hermitian relativistic quantum systems are presented by establishing/employing a connection between Dirac equation and supersymmetry
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- Title: ➤ Deconstructing Non-dissipative Non-Dirac-hermitian Relativistic Quantum Systems
- Author: Pijush K. Ghosh
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- Internet Archive ID: arxiv-1105.2495
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46Dissipative Quantum Systems And The Heat Capacity Enigma
A method to construct non-dissipative non-Dirac-hermitian relativistic quantum system that is isospectral with a Dirac-hermitian Hamiltonian is presented. The general technique involves a realization of the basic canonical (anti-)commutation relations involving the Dirac matrices and the bosonic degrees of freedom in terms of non-Dirac-hermitian operators, which are hermitian in a Hilbert space that is endowed with a pre-determined positive-definite metric. Several examples of exactly solvable non-dissipative non-Dirac-hermitian relativistic quantum systems are presented by establishing/employing a connection between Dirac equation and supersymmetry
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- Internet Archive ID: arxiv-0911.1584
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47Rapid Mixing And Stability Of Quantum Dissipative Systems
By Angelo Lucia, Toby S. Cubitt, Spyridon Michalakis and David Pérez-García
The physics of many materials is modeled by quantum many-body systems with local interactions. If the model of the system is sensitive to noise from the environment, or small perturbations to the original interactions, it will not properly model the robustness of the real physical system it aims to describe, or be useful when engineering novel systems for quantum information processing. We show that local observables and correlation functions of local Liouvillians are stable to local perturbations if the dynamics is rapidly mixing and has a unique fixed point. No other condition is required.
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- Title: ➤ Rapid Mixing And Stability Of Quantum Dissipative Systems
- Authors: Angelo LuciaToby S. CubittSpyridon MichalakisDavid Pérez-García
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- Internet Archive ID: arxiv-1409.7809
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48Quantum Liouville-space Trajectories For Dissipative Systems
By Jeremy B. Maddox and Eric R. Bittner
In this paper we present a new quantum-trajectory based treatment of quantum dynamics suitable for dissipative systems. Starting from a de Broglie/Bohm-like representation of the quantum density matrix, we derive and define quantum equations-of-motion for Liouville-space trajectories for a generalized system coupled to a dissipative environment. Our theory includes a vector potential which mixes forward and backwards propagating components and non-local quantum potential which continuously produces coherences in the system. These trajectories are then used to propagate an adaptive Lagrangian grid which carries the density matrix, $\rho(x,y)$, and the action, $A(x,y)$, thereby providing a complete hydrodynamic-like description of the dynamics.
“Quantum Liouville-space Trajectories For Dissipative Systems” Metadata:
- Title: ➤ Quantum Liouville-space Trajectories For Dissipative Systems
- Authors: Jeremy B. MaddoxEric R. Bittner
- Language: English
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- Internet Archive ID: arxiv-quant-ph0102055
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49Dynamics Of Quantum Dissipative Systems: The Example Of Quantum Brownian Motors
By J. Peguiron
Brownian motors, i.e. devices able to produce useful work out of thermal forces with the help of other unbiased forces, provide an ideal benchmark for the investigation of quantum dissipative systems, for two reasons. First, the interaction with a dissipative environment plays an essential role in the performance of Brownian motors. Second, dissipative tunneling enriches the dynamics of quantum Brownian motors with respect to their classical counterpart, inducing features such as current reversals as a function of temperature. Here we report on our work on quantum Brownian motors and discuss the load characteristic of such a system.
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- Title: ➤ Dynamics Of Quantum Dissipative Systems: The Example Of Quantum Brownian Motors
- Author: J. Peguiron
- Language: English
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- Internet Archive ID: arxiv-cond-mat0611432
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50Effective Floquet-Gibbs States For Dissipative Quantum Systems
By Tatsuhiko Shirai, Juzar Thingna, Takashi Mori, Sergey Denisov, Peter Hänggi and Seiji Miyashita
A periodically driven quantum system, when coupled to a heat bath, relaxes to a non-equilibrium asymptotic state. In the general situation, the retrieval of this asymptotic state presents a rather non-trivial task. It was recently shown that in the limit of an infinitesimal coupling, using so-called rotating wave approximation (RWA), and under strict conditions imposed on the time-dependent system Hamiltonian, the asymptotic state can attain the Gibbs form. A Floquet-Gibbs state is characterized by a density matrix which is diagonal in the Floquet basis of the system Hamiltonian with the diagonal elements obeying a Gibbs distribution, being parametrized by the corresponding Floquet quasi-energies. Addressing the non-adiabatic driving regime, upon using the Magnus expansion, we employ the concept of a corresponding effective Floquet Hamiltonian. In doing so we go beyond the conventionally used RWA and demonstrate that the idea of Floquet-Gibbs states can be extended to the realistic case of a weak, although finite system-bath coupling, herein termed effective Floquet-Gibbs states.
“Effective Floquet-Gibbs States For Dissipative Quantum Systems” Metadata:
- Title: ➤ Effective Floquet-Gibbs States For Dissipative Quantum Systems
- Authors: ➤ Tatsuhiko ShiraiJuzar ThingnaTakashi MoriSergey DenisovPeter HänggiSeiji Miyashita
“Effective Floquet-Gibbs States For Dissipative Quantum Systems” Subjects and Themes:
- Subjects: Quantum Physics - Statistical Mechanics - Condensed Matter
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- Internet Archive ID: arxiv-1511.06864
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1Home Life of Poe
By Susan Archer Weiss

The author of this biography of Poe, Susan Weiss, describes her work as follows: "I have not treated Poe in his character of poet or author, but confined myself to his private home-life, domestic and social, as I have heard it described by Poe's most intimate friends who knew him from infancy—some of them my own relatives—and from my own brief knowledge of him in the last three months of his life." - Summary by Ciufi Galeazzi
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- Author: Susan Archer Weiss
- Language: English
- Publish Date: 1907
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