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This book draws together the essential elements of classical electrodynamics, surface wave physics, plasmonic materials, and circuit theory of electrical engineering to provide insight into the essential physics of nanoscale light-matter interaction and to provide design methodology for practical nanoscale plasmonic devices. A chapter on classical and quantal radiation also highlights the similarities (and differences) between the classical fields of Maxwell's equations and the wave functions of Schrodinger's equation. The aim of this chapter is to provide a semiclassical picture of atomic absorption and emission of radiation, lending credence and physical plausibility to the "rules" of standard wave-mechanical calculations.The structure of the book is designed around five principal chapters, but many of the chapters have extensive "complements" that either treat important digressions from the main body or penetrate deeper into some fundamental issue. Furthermore, at the end of the book are several appendices to provide readers with a convenient reference for frequently-occurring special functions and explanations of the analytical tools, such as vector calculus and phasors, needed to express important results in electromagnetics and waveguide theory.To request a copy of the Solutions Manual, visit: http://global.oup.com/uk/academic/physics/admin/solutions
This book investigates the fundamental physical principles and engineering methodologies governing the interaction between light and matter at the nanoscale. The authors, Frederico Nunes and John Weiner, synthesize classical electrodynamics, surface wave physics, and circuit theory to establish a comprehensive framework for designing plasmonic devices. By bridging the gap between Maxwell's equations and Schrodinger's wave functions, the text provides a semiclassical perspective on radiation processes that informs both theoretical understanding and practical application.
What You Will Find
Experts identify this text as a rigorous resource for students and researchers bridging the gap between theoretical physics and applied engineering. Readers frequently note the technical density of the prose, which requires a strong foundation in electromagnetics to fully utilize the provided design methodologies.
Page Count:
261
Publication Date:
2013-02-07
Publisher:
Oxford University Press
ISBN-10:
0198567650
ISBN-13:
9780198567653
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