Optical and Electrical Properties of Nanoscale Materials

Optical and Electrical Properties of Nanoscale Materials

EnglishHardbackPrint on demand
Diebold, Alain
Springer, Berlin
EAN: 9783030803223
Print on demand
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Detailed information

This book covers the optical and electrical properties of nanoscale materials with an emphasis on how new and unique material properties result from the special nature of their electronic band structure. Beginning with a review of the optical and solid state physics needed for understanding optical and electrical properties, the book then introduces the electronic band structure of solids and discusses the effect of spin orbit coupling on the valence band, which is critical for understanding the optical properties of most nanoscale materials. Excitonic effects and excitons are also presented along with their effect on optical absorption.
2D materials, such as graphene and transition metal dichalcogenides, are host to unique electrical properties resulting from the electronic band structure. This book devotes significant attention to the optical and electrical properties of 2D and topological materials with an emphasis on optical measurements, electrical characterization of carrier transport, and a discussion of the electronic band structures using a tight binding approach. This book succinctly compiles useful fundamental and practical information from one of the fastest growing research topics in materials science and is thus an essential compendium for both students and researchers in this rapidly moving field.
EAN 9783030803223
ISBN 3030803228
Binding Hardback
Publisher Springer, Berlin
Publication date January 11, 2022
Pages 484
Language English
Dimensions 235 x 155
Country Switzerland
Readership Professional & Scholarly
Authors Diebold, Alain; Hofmann Tino
Illustrations XIX, 484 p. 232 illus., 4 illus. in color.
Edition 1st ed. 2021
Series Springer Series in Materials Science