An edition of Quantum optics (2000)

Quantum optics

including noise reduction, trapped ions, quantum trajectories, and decoherence

2nd ed.

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Last edited by MARC Bot
October 28, 2025 | History
An edition of Quantum optics (2000)

Quantum optics

including noise reduction, trapped ions, quantum trajectories, and decoherence

2nd ed.

"Quantum Optics gives a very broad coverage of basic laser-related phenomena that allow scientist and engineers to carry out research in quantum optics and laser physics." "It covers quantization of the electromagnetic field, quantum theory of coherence, atom-field interaction models, resonance fluorescence, quantum theory of damping, laser theory using both the master equation and the Langevin theory, the correlated emission laser, input-output theory with applications to non-linear optics, quantum trajectories, quantum non-demolition measurements and generation of non-classical vibrational states of ions in a Paul trap. In this second edition, there is an enlarged chapter on decoherence, as well as additional material dealing with elements of quantum computation, entanglement of pure and mixed states as well as a chapter on quantum copying and processors."--BOOK JACKET.

Publish Date
Publisher
Springer
Language
English
Pages
414

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Previews available in: English

Book Details


Edition Notes

Includes bibliographical references and index.

Published in
Berlin, New York

Classifications

Library of Congress
QC446.2 .O78 2008

The Physical Object

Pagination
xx, 414 p. :
Number of pages
414

Edition Identifiers

Open Library
OL18297481M
Internet Archive
quantumopticsinc00orsz
ISBN 13
9783540727064
LCCN
2007931619
OCLC/WorldCat
191258373
LibraryThing
4683344
Goodreads
6026420

Work Identifiers

Work ID
OL462419W

Work Description

"Quantum Optics gives a very broad coverage of basic laser-related phenomena that allow scientists and engineers to carry out research in quantum optics and laser physics. It covers the quantization of the electromagnetic field quantum theory of coherence, atom-field interaction models, resonance fluorescence, quantum theory of damping, laser theory using both the master equation and the Langevin approach, the correlated-emission laser, input-output theory with application in nonlinear optics, quantum trajectories, atom optics, quantum non-demolition measurements and generation of non-classical vibrational states of ions in a Paul trap. These topics are presented in a unified and didactic manner.

The presentation of the book is clear and pedagogical; it balances the theoretical aspects of the optical phenomena with recent relevant experiments."--Jacket.

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