Nanomagnetic and spintronic devices for energy-efficient memory and computing - Info and Reading Options
By Supriyo Bandyopadhyay and Jayasimha Atulasimha

"Nanomagnetic and spintronic devices for energy-efficient memory and computing" was published by John Wiley & Sons in 2016 - Chichester, UK, it has 332 pages and the language of the book is English.
“Nanomagnetic and spintronic devices for energy-efficient memory and computing” Metadata:
- Title: ➤ Nanomagnetic and spintronic devices for energy-efficient memory and computing
- Authors: Supriyo BandyopadhyayJayasimha Atulasimha
- Language: English
- Number of Pages: 332
- Publisher: John Wiley & Sons
- Publish Date: 2016
- Publish Location: Chichester, UK
“Nanomagnetic and spintronic devices for energy-efficient memory and computing” Subjects and Themes:
- Subjects: ➤ Magnetic memory (computers) - Nanotechnology - Microelectronics - Nanoelectronics - Magnetic memory (Computers) - Spintronics
Edition Specifications:
- Pagination: pages cm
Edition Identifiers:
- The Open Library ID: OL30399599M - OL21574660W
- Online Computer Library Center (OCLC) ID: 910538363
- Library of Congress Control Number (LCCN): 2015033564
- ISBN-13: 9781118869260
- All ISBNs: 9781118869260
AI-generated Review of “Nanomagnetic and spintronic devices for energy-efficient memory and computing”:
"Nanomagnetic and spintronic devices for energy-efficient memory and computing" Table Of Contents:
- 1- Introduction to spintronic and nanomagnetic computing devices
- 2- Potential applications of all electric spin valves made of asymmetrically biased quantum point contacts
- 3- Spin-transistor technology for spintronics/CMOS hybrid logic circuits and systems
- 4- Spin transfer torque : a multiscale picture
- 5- Magnetic tunnel junction based and integrated logic and computation
- 6- Magnetization switching and domain wall motion due to spin orbit torque
- 7- Magnonic logic devices
- 8- Strain mediated magnetoelectric memory
- 9- Hybrid spintronics-strainronics
- 10- Unconventional nanocomputing with physical wave interference functions.
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