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Spintronics Handbook, Second Edition: Spin Transport and Magnetism: Volume One: Metallic Spintronics

Spintronics Handbook, Second Edition: Spin Transport and Magnetism: Volume One: Metallic Spintronics

Autorzy
Wydawnictwo Taylor & Francis Inc
Data wydania 21/05/2019
Liczba stron 734
Forma publikacji książka w twardej oprawie
Poziom zaawansowania Dla szkół wyższych i kształcenia podyplomowego
ISBN 9781498769525
Kategorie Fizyka ciał skondensowanych (fizyka ciał ciekłych i fizyka ciał stałych), Nauka o materiałach, Technologia mikrofalowa
718.45 PLN (z VAT)
$190.50 / €161.40 / £147.00 /
Produkt na zamówienie
Dostawa 3-4 tygodnie
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Opis książki

Spintronics Handbook, Second Edition offers an update on the single most comprehensive survey of the two intertwined fields of spintronics and magnetism, covering the diverse array of materials and structures, including silicon, organic semiconductors, carbon nanotubes, graphene, and engineered nanostructures. It focuses on seminal pioneering work, together with the latest in cutting-edge advances, notably extended discussion of two-dimensional materials beyond graphene, topological insulators, skyrmions, and molecular spintronics. The main sections cover physical phenomena, spin-dependent tunneling, control of spin and magnetism in semiconductors, and spin-based applications.

Spintronics Handbook, Second Edition: Spin Transport and Magnetism: Volume One: Metallic Spintronics

Spis treści

Volume 1. Metallic Spintronics


Section I. Introduction


1. Historical Overview: From Electron Transport in Magnetic Materials to Spintronics
Albert Fert





Section II. Magnetic Metallic Multilayers


2. Basics of Nano-thin Film Magnetism
Bretislav Heinrich, Paul Omelchenko, and Erol Girt


3. Micromagnetism as a Prototype for Complexity
Anthony S. Arrott


4. Giant Magnetoresistance
Jack Bass


5. Spin Injection, Accumulation and Relaxation in Metals
Mark Johnson


6. Magnon Spintronics: Fundamentals of Magnon-based Computing
Andrii V. Chumak


7. Spin Torque Effects in Magnetic Systems: Experiment
Maxim Tsoi


8. Spin Torque in Magnetic Systems: Theory
A. Manchon and S. Zhang


9. Spin-Orbit Torques: Experiments and Theory
Aurelien Manchon and Hyunsoo Yang


10. All-Optical Switching of Magnetization: From Fundamentals to Nanoscale Recording
Andrei Kirilyuk, Alexey V. Kimel, and Theo Rasing





Section III. Magnetic Tunnel Junctions


11. Tunneling Magnetoresistance: Experiment (Non-MgO)
Patrick R. LeClair and Jagadeesh S. Moodera


12. Tunnel Magnetoresistance in MgO-based Magnetic Tunnel Junctions: Experiment
Shinji Yuasa


13. Tunneling Magnetoresistance: Theory
Kirill D. Belashchenko and Evgeny Y. Tsymbal


14. Spin Filter Tunneling
Tiffany S. Santos and Jagadeesh S. Moodera


15. Spin-Injection Torque in Magnetic Tunnel Junctions
Yoshishige Suzuki and Hitoshi Kubota


16. Phase-sensitive Interface and Proximity Effects in Superconducting Spintronics
Matthias Eschrig


17. Multiferroic Tunnel Junctions
Manuel Bibes and Agnes Barthelemy

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