Nanomagnetic and Spintronic Devices for Energy-Efficient Memory and Computing

Nanomagnetic and Spintronic Devices for Energy-Efficient Memory and Computing
Author :
Publisher : John Wiley & Sons
Total Pages : 352
Release :
ISBN-10 : 9781118869246
ISBN-13 : 1118869249
Rating : 4/5 (249 Downloads)

Book Synopsis Nanomagnetic and Spintronic Devices for Energy-Efficient Memory and Computing by : Jayasimha Atulasimha

Download or read book Nanomagnetic and Spintronic Devices for Energy-Efficient Memory and Computing written by Jayasimha Atulasimha and published by John Wiley & Sons. This book was released on 2016-02-03 with total page 352 pages. Available in PDF, EPUB and Kindle. Book excerpt: Nanomagnetic and spintronic computing devices are strong contenders for future replacements of CMOS. This is an important and rapidly evolving area with the semiconductor industry investing significantly in the study of nanomagnetic phenomena and in developing strategies to pinpoint and regulate nanomagnetic reliably with a high degree of energy efficiency. This timely book explores the recent and on-going research into nanomagnetic-based technology. Key features: Detailed background material and comprehensive descriptions of the current state-of-the-art research on each topic. Focuses on direct applications to devices that have potential to replace CMOS devices for computing applications such as memory, logic and higher order information processing. Discusses spin-based devices where the spin degree of freedom of charge carriers are exploited for device operation and ultimately information processing. Describes magnet switching methodologies to minimize energy dissipation. Comprehensive bibliographies included for each chapter enabling readers to conduct further research in this field. Written by internationally recognized experts, this book provides an overview of a rapidly burgeoning field for electronic device engineers, field-based applied physicists, material scientists and nanotechnologists. Furthermore, its clear and concise form equips readers with the basic understanding required to comprehend the present stage of development and to be able to contribute to future development. Nanomagnetic and Spintronic Devices for Energy-Efficient Memory and Computing is also an indispensable resource for students and researchers interested in computer hardware, device physics and circuits design.


Nanomagnetic and Spintronic Devices for Energy-Efficient Memory and Computing Related Books

Nanomagnetic and Spintronic Devices for Energy-Efficient Memory and Computing
Language: en
Pages: 352
Authors: Jayasimha Atulasimha
Categories: Technology & Engineering
Type: BOOK - Published: 2016-02-03 - Publisher: John Wiley & Sons

DOWNLOAD EBOOK

Nanomagnetic and spintronic computing devices are strong contenders for future replacements of CMOS. This is an important and rapidly evolving area with the sem
Nanomagnetic and Spintronic Devices for Energy-Efficient Memory and Computing
Language: en
Pages: 352
Authors: Jayasimha Atulasimha
Categories: Technology & Engineering
Type: BOOK - Published: 2016-01-27 - Publisher: John Wiley & Sons

DOWNLOAD EBOOK

Nanomagnetic and spintronic computing devices are strong contenders for future replacements of CMOS. This is an important and rapidly evolving area with the sem
Energy Efficient Spintronic Device for Neuromorphic Computation
Language: en
Pages: 65
Authors: Md Ali Azam
Categories:
Type: BOOK - Published: 2019 - Publisher:

DOWNLOAD EBOOK

Future computing will require significant development in new computing device paradigms. This is motivated by CMOS devices reaching their technological limits,
Spintronics-Based Neuromorphic Computing
Language: en
Pages: 134
Authors: Debanjan Bhowmik
Categories:
Type: BOOK - Published: - Publisher: Springer Nature

DOWNLOAD EBOOK

Magnetic Domain Wall Devices
Language: en
Pages: 175
Authors: Saima Afroz Siddiqui
Categories:
Type: BOOK - Published: 2019 - Publisher:

DOWNLOAD EBOOK

Spintronics promises intriguing device paradigms where electron spin is used as the information token instead of its charge counterpart. Spin transfer torque-ma