Spintronics handbook. Volume one, Metallic spintronics / edited by Evgeny Y. Tsymbal and Igor Žutić.

Contributor(s): Tsymbal, E. Y. (Evgeny Y.) [editor.] | Zutic, Igor [editor.]Material type: TextTextPublisher: Boca Raton, FL : CRC Press 2019Edition: Second editionDescription: 1 online resource (xvi, 717 pages)Content type: text Media type: computer Carrier type: online resourceISBN: 9780429423079; 0429423071; 9780429750892; 0429750897; 9780429750885; 0429750889; 9780429750878; 0429750870Subject(s): Spintronics -- Handbooks, manuals, etc | Magnetism -- Handbooks, manuals, etc | TECHNOLOGY & ENGINEERING / MechanicalDDC classification: 621.3 LOC classification: TK7874.887Online resources: Taylor & Francis | OCLC metadata license agreement Summary: Spintronics Handbook, Second Editionoffers 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.
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Spintronics Handbook, Second Editionoffers 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.

Includes index.

OCLC-licensed vendor bibliographic record.

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