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Titlebook: Quantum Optics; D. F. Walls,G. J. Milburn Book 19941st edition Springer-Verlag Berlin Heidelberg 1994 laser.optics.quantum optics.quantum

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Quantum Coherence and Measurement Theory,chemes to produce and detect superposition states in an optical context. As we shall show such states are very fragile in the presence of dissipation and rapidly collapse to a classical mixture exhibiting no unusual interference features.
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0172-6234 atom optics. Experimental results are used to illustrate the theory throughout. This yields the most comprehensive and up-to-date coverage of experiment and theory in quantum optics in any textbook.978-3-540-58831-3978-3-642-79504-6Series ISSN 0172-6234
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Representations of the Electromagnetic Field,d each mode requires a statistical description in terms of its allowed quantum states. However, as the modes are described by independent Hilbert spaces, we may form the statistical description of the entire field as the product of the distribution function for each mode. This enables us to confine
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Stochastic Methods,l equations of motion. There are several ways in which a quantum theory of damping may be developed. We shall adopt the following approach: We consider the system of interest coupled to a heat bath or reservoir. We first derive an operator master equation for the density operator of the system in th
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Input-Output Formulation of Optical Cavities,damped. This approach is based on treating the field external to the cavity, to which the system is coupled, as a heat bath. The heat bath is simply a passive system with which the system gradually comes into equilibrium. In this chapter we will explicitly treat the heat bath as the external cavity
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