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Laser Beam Propagation In The Atmosphere by Hugo Weichel

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1DTIC AD0781763: Propagation Of High-Energy Laser Beam In The Atmosphere

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Atmospheric turbulence can affect the propagation of laser beams of any power. Thermal blooming, a nonlinear propagation process, can seriously degrade high-energy beams. These two processes are reviewed in detail, with emphasis on parametric effects such as aperture size wavelength, and focal distance. Included in the discussion are such new topics as supersonic slewing and stagnation zone problems. (Author)

“DTIC AD0781763: Propagation Of High-Energy Laser Beam In The Atmosphere” Metadata:

  • Title: ➤  DTIC AD0781763: Propagation Of High-Energy Laser Beam In The Atmosphere
  • Author: ➤  
  • Language: English

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The book is available for download in "texts" format, the size of the file-s is: 36.20 Mbs, the file-s for this book were downloaded 65 times, the file-s went public at Sun Nov 24 2019.

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2NASA Technical Reports Server (NTRS) 20120012963: High Energy Laser Beam Propagation In The Atmosphere: The Integral Invariants Of The Nonlinear Parabolic Equation And The Method Of Moments

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The method of moments is used to define and derive expressions for laser beam deflection and beam radius broadening for high-energy propagation through the Earth s atmosphere. These expressions are augmented with the integral invariants of the corresponding nonlinear parabolic equation that describes the electric field of high-energy laser beam to propagation to yield universal equations for the aforementioned quantities; the beam deflection is a linear function of the propagation distance whereas the beam broadening is a quadratic function of distance. The coefficients of these expressions are then derived from a thin screen approximation solution of the nonlinear parabolic equation to give corresponding analytical expressions for a target located outside the Earth s atmospheric layer. These equations, which are graphically presented for a host of propagation scenarios, as well as the thin screen model, are easily amenable to the phase expansions of the wave front for the specification and design of adaptive optics algorithms to correct for the inherent phase aberrations. This work finds application in, for example, the analysis of beamed energy propulsion for space-based vehicles.

“NASA Technical Reports Server (NTRS) 20120012963: High Energy Laser Beam Propagation In The Atmosphere: The Integral Invariants Of The Nonlinear Parabolic Equation And The Method Of Moments” Metadata:

  • Title: ➤  NASA Technical Reports Server (NTRS) 20120012963: High Energy Laser Beam Propagation In The Atmosphere: The Integral Invariants Of The Nonlinear Parabolic Equation And The Method Of Moments
  • Author: ➤  
  • Language: English

“NASA Technical Reports Server (NTRS) 20120012963: High Energy Laser Beam Propagation In The Atmosphere: The Integral Invariants Of The Nonlinear Parabolic Equation And The Method Of Moments” Subjects and Themes:

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The book is available for download in "texts" format, the size of the file-s is: 14.02 Mbs, the file-s for this book were downloaded 63 times, the file-s went public at Fri Nov 11 2016.

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3Laser Beam Propagation In The Atmosphere : April 5-6, 1983, Arlington, Virginia

The method of moments is used to define and derive expressions for laser beam deflection and beam radius broadening for high-energy propagation through the Earth s atmosphere. These expressions are augmented with the integral invariants of the corresponding nonlinear parabolic equation that describes the electric field of high-energy laser beam to propagation to yield universal equations for the aforementioned quantities; the beam deflection is a linear function of the propagation distance whereas the beam broadening is a quadratic function of distance. The coefficients of these expressions are then derived from a thin screen approximation solution of the nonlinear parabolic equation to give corresponding analytical expressions for a target located outside the Earth s atmospheric layer. These equations, which are graphically presented for a host of propagation scenarios, as well as the thin screen model, are easily amenable to the phase expansions of the wave front for the specification and design of adaptive optics algorithms to correct for the inherent phase aberrations. This work finds application in, for example, the analysis of beamed energy propulsion for space-based vehicles.

“Laser Beam Propagation In The Atmosphere : April 5-6, 1983, Arlington, Virginia” Metadata:

  • Title: ➤  Laser Beam Propagation In The Atmosphere : April 5-6, 1983, Arlington, Virginia
  • Language: English

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The book is available for download in "texts" format, the size of the file-s is: 463.55 Mbs, the file-s for this book were downloaded 16 times, the file-s went public at Tue Aug 01 2023.

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ACS Encrypted PDF - Cloth Cover Detection Log - DjVuTXT - Djvu XML - Dublin Core - EPUB - Item Tile - JPEG Thumb - JSON - LCP Encrypted EPUB - LCP Encrypted PDF - Log - MARC - MARC Binary - Metadata - OCR Page Index - OCR Search Text - PNG - Page Numbers JSON - RePublisher Final Processing Log - RePublisher Initial Processing Log - Scandata - Single Page Original JP2 Tar - Single Page Processed JP2 ZIP - Text PDF - Title Page Detection Log - chOCR - hOCR -

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4Laser Beam Propagation In The Atmosphere

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The method of moments is used to define and derive expressions for laser beam deflection and beam radius broadening for high-energy propagation through the Earth s atmosphere. These expressions are augmented with the integral invariants of the corresponding nonlinear parabolic equation that describes the electric field of high-energy laser beam to propagation to yield universal equations for the aforementioned quantities; the beam deflection is a linear function of the propagation distance whereas the beam broadening is a quadratic function of distance. The coefficients of these expressions are then derived from a thin screen approximation solution of the nonlinear parabolic equation to give corresponding analytical expressions for a target located outside the Earth s atmospheric layer. These equations, which are graphically presented for a host of propagation scenarios, as well as the thin screen model, are easily amenable to the phase expansions of the wave front for the specification and design of adaptive optics algorithms to correct for the inherent phase aberrations. This work finds application in, for example, the analysis of beamed energy propulsion for space-based vehicles.

“Laser Beam Propagation In The Atmosphere” Metadata:

  • Title: ➤  Laser Beam Propagation In The Atmosphere
  • Author:
  • Language: English

Edition Identifiers:

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The book is available for download in "texts" format, the size of the file-s is: 727.41 Mbs, the file-s for this book were downloaded 38 times, the file-s went public at Mon Jul 31 2023.

Available formats:
ACS Encrypted PDF - Cloth Cover Detection Log - DjVuTXT - Djvu XML - Dublin Core - EPUB - Item Tile - JPEG Thumb - JSON - LCP Encrypted EPUB - LCP Encrypted PDF - Log - MARC - MARC Binary - Metadata - OCR Page Index - OCR Search Text - PNG - Page Numbers JSON - RePublisher Final Processing Log - RePublisher Initial Processing Log - Scandata - Single Page Original JP2 Tar - Single Page Processed JP2 ZIP - Text PDF - Title Page Detection Log - chOCR - hOCR -

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