Quantum optics for experimentalists / Zheyu Jeff Ou.
Material type:
- 9789813220201 (pbk. ; alk. paper)
- 535.15 23 Ou93
Item type | Current library | Call number | Status | Date due | Barcode | Item holds | |
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Books | ISI Library, Kolkata | 535.15 Ou93 (Browse shelf(Opens below)) | Available | 138113 |
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535.15 M616 Elements of quantum optics | 535.15 Or76 Quantum optics | 535.15 Or76 Quantum optics : | 535.15 Ou93 Quantum optics for experimentalists / | 535.15 P635 Photons and quantum fluctuations | 535.15 P972 Exploring quantum physics through hands-on projects / | 535.15 Sh555 Introduction to quantum optics |
Includes bibliographical references and index.
1. Historical development of quantum optics and a brief introduction --
2. Mode theory of optical fields and their quantization --
3. Quantum states of single-mode fields --
4. Quantum states of multi-mode fields --
5. Theory of photo-detection and quantum theory of coherence --
6. Generation and transformation of quantum states --
7. Experimental techniques of quantum optics I: Photon counting technique --
8. Applications of photon counting techniques: Multi-photon interference and entanglement --
9. Experimental techniques of quantum optics II: Detection of continuous photo-currents --
10. Applications of homodyne detection technique: quantum measurement of continuous variables --
11. Quantum noise in phase measurement --
Appendices.
"This book on quantum optics is from the point of view of an experimentalist. It approaches the theory of quantum optics with the language of optical modes of classical wave theory, with which experimentalists are most familiar. This approach makes the transition easy from classical optics to quantum optics. The emphasis on the multimode description of an optical system is more realistic than in most quantum optics textbooks. After the theoretical part, the book goes directly to the two most basic experimental techniques in quantum optics and establishes the connection between the experiments and the theory. The applications include some key quantum optics experiments, and a few more current interests that deal with quantum correlation and entanglement, quantum noise in phase measurement and amplification, and quantum state measurement"--
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