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Introduction to Quantum Optics

Introduction to Quantum Optics

Introduction to Quantum Optics

From Light Quanta to Quantum Teleportation
Harry Paul, Humboldt-Universität zu Berlin
Igor Jex, FNSPE Czech Technical University of Prague
June 2006
This ISBN is for an eBook version which is distributed on our behalf by a third party.
Adobe eBook Reader
9780511192593
$102.00
USD
Adobe eBook Reader
USD
Hardback

    This textbook provides a physical understanding of what photons are and of their properties and applications. Special emphasis is made in the text to entangled photon pairs which exhibit quantum mechanical correlations over manifestly macroscopic distances. Such photon pairs make possible such exciting techniques as teleportation and quantum cryptography, as well as the physical realisation of Einstein-Podolsky-Rosen type experiments. In addition, nonclassical properties of light, such as photon antibunching and squeezing, as well as quantum phase measurement and optical tomography are discussed. The author describes relevant experiments and elucidates the physical ideas behind them. This book will be of interest to undergraduates and graduate students studying optics, and to any physicist with an interest in the mysteries of the photon and exciting modern work in quantum cryptography and teleportation.

    • First edition in English, with significant new material on the Franson experiment and quantum teleportation
    • Describes relevant experiments and elucidates the physical ideas behind them
    • Extensive explanations are used in preference to technical formulae

    Product details

    June 2006
    Adobe eBook Reader
    9780511192593
    0 pages
    0kg
    37 b/w illus.
    This ISBN is for an eBook version which is distributed on our behalf by a third party.

    Table of Contents

    • 1. Introduction
    • 2. Historical milestones
    • 3. Basics of the classical description of light
    • 4. Quantum mechanical understanding of light
    • 5. Light detectors
    • 6. Spontaneous emission
    • 7. Interference
    • 8. Photon statistics
    • 9. Squeezed light
    • 10. Measuring distribution functions
    • 11. Optical Einstein–Podolsky–Rosen experiments
    • 12. Quantum cryptography
    • 13. Quantum teleportation
    • 14. Summary: what do we know about the photon?
    • Appendix: mathematical description
    • References
    • Index.
      Author
    • Harry Paul , Humboldt-Universität zu Berlin
    • Translator
    • Igor Jex , FNSPE Czech Technical University of Prague