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INTERACTION LUMIÈRE-MATIÈRE : PHYSIQUE ET INGÉNIERIE AU par John Weiner très bon état

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“Book is in Very Good Condition.  Text will be unmarked.  May show some signs of use or wear. Will ...
ISBN-10
0198567650
Book Title
Light-Matter Interaction: Physics and Engineering at the
ISBN
9780198567653
Subject Area
Technology & Engineering, Science
Publication Name
Light-Matter Interaction : Physics and Engineering at the Nanoscale
Publisher
Oxford University Press, Incorporated
Item Length
6.9 in
Subject
Lasers & Photonics, Physics / General
Publication Year
2013
Type
Textbook
Format
Hardcover
Language
English
Item Height
0.8 in
Author
John Weiner, Frederico Nunes
Item Weight
25 Oz
Item Width
9.8 in
Number of Pages
280 Pages

À propos de ce produit

Product Identifiers

Publisher
Oxford University Press, Incorporated
ISBN-10
0198567650
ISBN-13
9780198567653
eBay Product ID (ePID)
143546221

Product Key Features

Number of Pages
280 Pages
Publication Name
Light-Matter Interaction : Physics and Engineering at the Nanoscale
Language
English
Publication Year
2013
Subject
Lasers & Photonics, Physics / General
Type
Textbook
Author
John Weiner, Frederico Nunes
Subject Area
Technology & Engineering, Science
Format
Hardcover

Dimensions

Item Height
0.8 in
Item Weight
25 Oz
Item Length
6.9 in
Item Width
9.8 in

Additional Product Features

Intended Audience
Scholarly & Professional
Dewey Edition
23
Reviews
This book provides a clear and concise explanation of the classical electromagnetism and basic quantum mechanics needed to explore interactions between light and matter [] those who seek a good grounding in electromagnetics will find this text very useful. There are also a number of helpful supplements and appendices which provide added detail on diverse topics., 'The book by Weiner and Nunes hits the sweet spot in the application of electromagnetic theory to problems on interest in nanoscience. The standard elements of the theory are nicely covered, but unique elements of the book are the "Complements" wherein extensions of electromagnetic theory to nanoscience problems are presented, including the connection polarization and polarizability, of real antennas to oscillating dipoles, and of electromagnetic modes toEinstein coefficients. The book also includes extensive discussions of surface waves, especially plasmon waves, of waveguides, and of the semiclassical theory of radiation interacting with atoms. Theauthors are well known experts in the field, so the book reflects a careful choice of topics relevant for modern nanoscience research. I congratulate the authors on a job well done.'George C. Schatz, Northwestern University, "The book by Weiner and Nunes hits the sweet spot in the application of electromagnetic theory to problems on interest in nanoscience. The standard elements of the theory are nicely covered, but unique elements of the book are the "Complements" wherein extensions of electromagnetic theory tonanoscience problems are presented, including the connection polarization and polarizability, of real antennas to oscillating dipoles, and of electromagnetic modes to Einstein coefficients. The book also includes extensive discussions of surface waves, especially plasmon waves, of waveguides, and ofthe semiclassical theory of radiation interacting with atoms. The authors are well known experts in the field, so the book reflects a careful choice of topics relevant for modern nanoscience research. I congratulate the authors on a job well done." --George C. Schatz, Northwestern University
Illustrated
Yes
Dewey Decimal
621.36/5
Table Of Content
1. Historical Synopsis of Light-Matter Interaction2. Elements of Classical Electromagnetic Field TheoryComplement A Energy Flow in Polarizable MatterComplement B Macroscopic Polarization from Microscopic PolarizabilityComplement C The Classical Charged Oscillator and the Dipole Antenna3. Surface Waves4. Transmission Lines, Waveguides, and Equivalent Circuits5. Radiation in Classical and Quantal AtomsComplement D Classical Blackbody RadiationAppendix A Systems of Units in ElectromagnetismAppendix B Review of Vector CalculusAppendix C Gradient, divergence and curl in cylindrical and polar coordinatesAppendix D Properties of PhasorsAppendix E Properties of the Laguerre FunctionsAppendix F Properties of the Legendre functionsAppendix G Properties of the Hermite polynomials
Synopsis
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'sequations and the wave functions of Schrödinger's equation. The aim of this chapter is to provide a semiclassical picture of atomic absorption and emission of radiation, lending credence and physicalplausibility 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 theanalytical tools, such as vector calculus and phasors, needed to express important results in electromagnetics and waveguide theory., 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 Schrödinger'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., 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., 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
LC Classification Number
TA1530
Copyright Date
2012
ebay_catalog_id
4

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