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Quantum Optics: Including Noise Reduction, Trapped Ions, Quantum Trajectories, and Decoherence Third Edition 2016 [Pehme köide]

  • Formaat: Paperback / softback, 485 pages, kõrgus x laius: 235x155 mm, kaal: 7606 g, 3 Illustrations, color; 90 Illustrations, black and white; XXII, 485 p. 93 illus., 3 illus. in color., 1 Paperback / softback
  • Ilmumisaeg: 22-Apr-2018
  • Kirjastus: Springer International Publishing AG
  • ISBN-10: 3319804774
  • ISBN-13: 9783319804774
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  • Formaat: Paperback / softback, 485 pages, kõrgus x laius: 235x155 mm, kaal: 7606 g, 3 Illustrations, color; 90 Illustrations, black and white; XXII, 485 p. 93 illus., 3 illus. in color., 1 Paperback / softback
  • Ilmumisaeg: 22-Apr-2018
  • Kirjastus: Springer International Publishing AG
  • ISBN-10: 3319804774
  • ISBN-13: 9783319804774
Teised raamatud teemal:
This new edition gives a unique and broad coverage of basic laser-related phenomena that allow graduate students, scientists 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 third edition, there is an enlarged chapter on trapped ions, as well as new sections on quantum computing and quantum bits with applications. There is also additional material included for quantum processing and entanglement. These topics are presented in a unified and didactic manner, each chapter is accompanied by specific problems and hints to solutions to deepen the knowledge.

Arvustused

The third edition of this book contains extensive and thorough coverage of basic laser-related phenomena including quantization of the electromagnetic field, quantum theory of coherence, laser theory using both the master equation and the Langevin theory, and generation of non-classical vibrational states of ions in a Paul trap. it will be of interest to a great variety of readers, including graduate students, scientists and engineers. It is a valuable addition to textbook literature in quantum optics. (Christian Brosseau, Optics & Photonics News, osa-opn-org, March, 2017)

Einsteins Theory of AtomRadiation Interaction.- AtomField
Interaction: Semi classical 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.- AtomField Interaction.-  SystemReservoir 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 Correlations.- Quantum
Cloning and Processing.- Appendices: Operator Relations.- The Method of
Characteristics.- Proof.- Stochastic Processes in a Nutshell.- Derivation of
the Homodyne Stochastic Schrödinger Differential Equation.- Fluctuations.-
Discrimination.- The No-Cloning Theorem.-  The Universal Quantum Cloning
Machine.- Hints to Solve the Problems.- Index.
Prof. Dr. Miguel Orszag Pontificia Universidad Católica de Chile Facultad de Física Av. Vicuña Mackenna 4860 Macul, Santiago Chile morszag@fis.puc.cl