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Magnetism and Spintronics in Carbon and Carbon Nanostructured Materials

AUTHOR Ray, Sekhar Chandra; Ray, Sekhar Chandr; Ray, Sekhar Chandra
PUBLISHER Elsevier (01/31/2020)
PRODUCT TYPE Paperback (Paperback)

Description

Magnetism and Spintronics in Carbon and Carbon Nanostructured Materials offers coverage of electronic structure, magnetic properties and their spin injection, and the transport properties of DLC, graphene, graphene oxide, carbon nanotubes, fullerenes, and their different composite materials. This book is a valuable resource for those doing research or working with carbon and carbon-related nanostructured materials for electronic and magnetic devices.

Carbon-based nanomaterials are promising for spintronic applications because their weak spin-orbit (SO) coupling and hyperfine interaction in carbon atoms entail exceptionally long spin diffusion lengths ( 100?m) in carbon nanotubes and graphene. The exceptional electronic and transport features of carbon nanomaterials could be exploited to build multifunctional spintronic devices. However, a large spin diffusion length comes at the price of small SO coupling, which limits the possibility of manipulating electrons via an external applied field.

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Product Format
Product Details
ISBN-13: 9780128176801
ISBN-10: 0128176806
Binding: Paperback or Softback (Trade Paperback (Us))
Content Language: English
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Page Count: 240
Carton Quantity: 16
Product Dimensions: 7.50 x 0.51 x 9.25 inches
Weight: 0.92 pound(s)
Feature Codes: Bibliography, Index, Illustrated
Country of Origin: US
Subject Information
BISAC Categories
Technology & Engineering | Materials Science - General
Technology & Engineering | Electrical
Dewey Decimal: 621.3
Library of Congress Control Number: 2020930319
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publisher marketing

Magnetism and Spintronics in Carbon and Carbon Nanostructured Materials offers coverage of electronic structure, magnetic properties and their spin injection, and the transport properties of DLC, graphene, graphene oxide, carbon nanotubes, fullerenes, and their different composite materials. This book is a valuable resource for those doing research or working with carbon and carbon-related nanostructured materials for electronic and magnetic devices.

Carbon-based nanomaterials are promising for spintronic applications because their weak spin-orbit (SO) coupling and hyperfine interaction in carbon atoms entail exceptionally long spin diffusion lengths ( 100?m) in carbon nanotubes and graphene. The exceptional electronic and transport features of carbon nanomaterials could be exploited to build multifunctional spintronic devices. However, a large spin diffusion length comes at the price of small SO coupling, which limits the possibility of manipulating electrons via an external applied field.

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