
Quantum Optics
Including Noise Reduction, Trapped Ions, Quantum Trajectories, and Decoherence
Miguel Orszag(Author)
Springer (Publisher)
2nd Edition
Published on 8. November 2007
Book
Hardback
XX, 414 pages
978-3-540-72706-4 (ISBN)
Article exhausted; check for reprint
Description
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. These topics are presented in a unified and didactic manner. The presentation of the book is clear and pedagogical.
More details
Edition
2nd ed. 2008
Language
English
Place of publication
Heidelberg
Germany
Publishing group
Springer Berlin
Target group
College/higher education
Professional and scholarly
Graduate
Edition type
Revised edition
Product notice
Laminated cover
Illustrations
89 s/w Abbildungen
89 black & white illustrations, biography
Dimensions
Height: 23.5 cm
Width: 15.5 cm
Thickness: 23 mm
Weight
812 gr
ISBN-13
978-3-540-72706-4 (9783540727064)
DOI
10.1007/978-3-540-72707-1
Schweitzer Classification
Other editions
New editions

Miguel Orszag
Quantum Optics
Including Noise Reduction, Trapped Ions, Quantum Trajectories, and Decoherence
Book
04/2016
3rd Edition
Springer
€96.29
Article exhausted; check for reprint
Additional editions

Miguel Orszag
Quantum Optics
Including Noise Reduction, Trapped Ions, Quantum Trajectories, and Decoherence
Book
10/2010
2nd Edition
Springer
€74.99
Article exhausted; check for reprint

Miguel Orszag
Quantum Optics
Including Noise Reduction, Trapped Ions, Quantum Trajectories, and Decoherence
E-Book
10/2007
2nd Edition
Springer
€83.29
Available for download
Previous edition

Miguel Orszag
Quantum Optics
Including Noise Reduction, Trapped Ions, Quantum Trajectories, and Decoherence
Book
11/1999
Springer
€85.59
Article exhausted; check for reprint
Content
Einstein's Theory of Atom-Radiation Interaction.- Atom-Field Interaction: Semiclassical Approach.- Quantization of the Electromagnetic Field.- States of the Electromagnetic Field I.- States of the Electromagnetic Field II.- Quantum Theory of Coherence.- Phase Space Description.- Atom-Field Interaction.- System-Reservoir Interactions.- Resonance Fluorescence.- Quantum Laser Theory: Master Equation Approach.- Quantum Laser Theory: Langevin Approach.- Quantum Noise Reduction 1.- Quantum Noise Reduction 2.- Quantum Phase.- Quantum Trajectories.- Atom Optics.- Measurements, Quantum Limits and All That.- Trapped Ions.- Decoherence.- Quantum Bits, Entanglement and Applications.- Quantum Cloning and Processing.