An edition of Optical Near Fields (2004)

Optical Near Fields

Introduction to Classical and Quantum Theories of Electromagnetic Phenomena at the Nanoscale

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Last edited by MARC Bot
September 28, 2024 | History
An edition of Optical Near Fields (2004)

Optical Near Fields

Introduction to Classical and Quantum Theories of Electromagnetic Phenomena at the Nanoscale

Using the thin film of light, the optical near field, that is localized on the surface of a nanometric material has removed the diffraction limit as a barrier to imaging on the nano- and atomic scales. But a paradigm shift in the concepts of optics and optical technology is required to understand the instrinsic nature of the near fields and how best to exploit them. Professors Ohstu and Kobayashi crafted Optical Near Fields on the basis of their hypothesis that the full potential for utilizing optical near fields can be realized only with novel nanometric processing, functions, and manipulation, i.e., by controlling the intrinsic interaction between nanometer-sized optical near fields and material systems, and further, atoms. The book presents physically intuitive concepts and theories for students, engineers, and scientists engaged in research in nanophotonics and atom photonics.

Publish Date
Language
English
Pages
206

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Previews available in: English

Book Details


Table of Contents

Deadlocks in Conventional Optical Science and Technology
Breaking Through the Diffraction Limit by Optical Near Field
Past and Present of Near-Field Optics
Dipole
Dipole Interaction Model of Optical Near Field
Electrodynamics of Oscillating Electric Dipoles
Self-Consistent Method Using a Propagator
Picture of Optical Near Field Based on Electric Charges Induced on the Surface and Polarized Currents
Picture of Optical Near Field as a Virtual Cloud Around a Nanometric System Surrounded by a Macroscopic System
Application to Nanophotonics and Atom Photonics
Appendices
Solutions to Problems.

Edition Notes

Online full text is restricted to subscribers.

Also available in print.

Mode of access: World Wide Web.

Published in
Berlin, Heidelberg
Series
Advanced Texts in Physics, Advanced Texts in Physics

Classifications

Dewey Decimal Class
621.36
Library of Congress
QC350-467, TA1501-1820, QC392-449.5, TA1750-1750.22, QC1-75, QC685-689.55

The Physical Object

Format
[electronic resource] :
Pagination
1 online resource (xi, 206 p.)
Number of pages
206

ID Numbers

Open Library
OL27078885M
Internet Archive
opticalnearfield00ohts
ISBN 10
3642073433, 3662091046
ISBN 13
9783642073434, 9783662091043
OCLC/WorldCat
851376794

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History

Download catalog record: RDF / JSON
September 28, 2024 Edited by MARC Bot import existing book
December 29, 2021 Edited by ImportBot import existing book
July 6, 2019 Created by MARC Bot import new book