E-Book, Englisch, Band 1, 280 Seiten, E-Book
Reihe: Wiley Series in Materials for Electronic & Optoelectronic Applications
Sato / Saitoh Spintronics for Next Generation Innovative Devices
1. Auflage 2015
ISBN: 978-1-118-75178-7
Verlag: John Wiley & Sons
Format: PDF
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)
E-Book, Englisch, Band 1, 280 Seiten, E-Book
Reihe: Wiley Series in Materials for Electronic & Optoelectronic Applications
ISBN: 978-1-118-75178-7
Verlag: John Wiley & Sons
Format: PDF
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)
Spintronics (short for spin electronics, or spin transportelectronics) exploits both the intrinsic spin of the electron andits associated magnetic moment, in addition to its fundamentalelectronic charge, in solid-state devices. Controlling the spin ofelectrons within a device can produce surprising and substantialchanges in its properties.
Drawing from many cutting edge fields, including physics, materialsscience, and electronics device technology, spintronics hasprovided the key concepts for many next generation informationprocessing and transmitting technologies. This book discusses allaspects of spintronics from basic science to applications andcovers:
* magnetic semiconductors
* topological insulators
* spin current science
* spin caloritronics
* ultrafast magnetization reversal
* magneto-resistance effects and devices
* spin transistors
* quantum information devices
This book provides a comprehensive introduction to Spintronicsfor researchers and students in academia and industry.
Weitere Infos & Material
List of Contributors
Series Preface
Preface
Introduction
Chapter 1: Fundamentals of magnetoresistance effects
K. Takanashi
Chapter 2: Spintronics Materials with High Spin Polarization
Y.K. Takahashi and K. Hono
Chapter 3: Spin current
Eijih Saitoh
Chapter 4: Spin Hall effect and inverse spin Hall effect
Shuichi Murakami
Chapter 5: Spin torque (domain wall drive, magnetization reversal)
Akinobu Yamaguchi
Chapter 6: Spin Pumping
Matthias Althammer, Mathias Weiler, Hans Huebl, and Sebastian T.B.Goennenwein
Chapter 7: Spin Seebeck effect
Jiang Xiao
Chapter8: Spin conversion at magnetic interfaces
Tomoyasu Taniyama
Chapter 9: Carbon-based Spintronics
Masashi Shiraishi
Chapter 10: Silicon spintronics for next-generation devices
Kohei Hamaya
Chapter 11: Electric-field control of magnetism in ferromagnetic semiconductors
Tomoteru Fukumura
Chapter 12: Quantum information processing using nitrogen-vacancy centres in diamond
Norikazu Mizuochi
Chapter 13: Ultrafast light-induced spin reversal in amorphous rare earth-transition metal alloy films
Arata Sukamoto
Index