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From Classical to Quantum Plasmonics in Three and Two Dimensions

✍ Scribed by Thomas Christensen (auth.)


Publisher
Springer International Publishing
Year
2017
Tongue
English
Leaves
190
Series
Springer Theses
Edition
1
Category
Library

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✦ Synopsis


This thesis provides a comprehensive introduction to two active research directions within the field of plasmonics: (i) nonclassical, or quantum, aspects of the plasmonic response; and (ii) two-dimensional plasmonics, a recent innovation in the field stimulated by the advent of two-dimensional materials. It discusses the fundamentals of this field in detail, and explores several current research directions.
Nonclassical plasmonics has been spurred on in recent years by the tremendous technological progress in nanofabrication and optical characterization; today, it is possible to investigate the plasmonic features of nanostructures with characteristic features in the few nanometer range. The book describes and analyzes the breakdown of the classical theory under these conditions and explores several alternatives and extensions. The unique electronic and dimensional features of novel two-dimensional materials, such as graphene, lie at the core of plasmonics' most rapidly developing subfield; two-dimensional plasmonics. This thesis provides a clear and comprehensive exposition of the central features for interested researchers looking for an entry point to this riveting area.

✦ Table of Contents


Front Matter....Pages i-xx
Introduction....Pages 1-9
Front Matter....Pages 11-11
Fundamentals of Plasmonics....Pages 13-35
Nonclassical Plasmonics....Pages 37-80
Front Matter....Pages 81-81
Electronic Properties of Graphene....Pages 83-96
Classical Graphene Plasmonics....Pages 97-129
Nonclassical Graphene Plasmonics....Pages 131-157
Outlook and Conclusions....Pages 159-163
Back Matter....Pages 165-181

✦ Subjects


Physics, general


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