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, 1956
1. Crystal lattices. General theory 2. . Crystal lattices. Applications 3. Interaction of light with non-conducting crystals 4. Electrons in a perfect lattice 5. Cohesive forces in metals 6. Transport phenomena 7.
R. Peierls, L. D. Roberts
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1. Crystal lattices. General theory 2. . Crystal lattices. Applications 3. Interaction of light with non-conducting crystals 4. Electrons in a perfect lattice 5. Cohesive forces in metals 6. Transport phenomena 7.
R. Peierls, L. D. Roberts
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2000
This theory was formulated originally by Glauber [6.1], where he considers the process of photon detection, which plays a central role. The basic process involved in the detection is the absorption of a photon and the corresponding generation of a photoelectron, measured via an electric current.
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This theory was formulated originally by Glauber [6.1], where he considers the process of photon detection, which plays a central role. The basic process involved in the detection is the absorption of a photon and the corresponding generation of a photoelectron, measured via an electric current.
openaire +2 more sources
Quantum Theory of Many-Particle Systems
, 1971A. Fetter, J. Walecka, L. Kadanoff
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A quantum theory of molecular structure and its applications
, 1991R. Bader
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Quantum optics: Quantum theory of the laser – density operator approach
, 1997M. Scully, M. Zubairy
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