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Titlebook: Dynamics of Dissipation; Piotr Garbaczewski,Robert Olkiewicz Book 2002 Springer-Verlag Berlin Heidelberg 2002 chaos.decoherence.dissipatio

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Finite Dissipative Quantum Systemswith special emphasis on the notions of complete positivity and normality for the quantum evolutions. Damping is then used to stabilise the motion of a kicked oscillator. Some statistical features of the orbits of the kicked quantum oscillator with damping are analysed in the semi-classical regime.
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Driven Chaotic Mesoscopic Systems, Dissipation and Decoherencewell as in nuclear, atomic and molecular physics. Such systems tend to absorb energy. This irreversible effect is known as dissipation. More generally, . may b e a dynamical variable, where the total Hamiltonian is .. In such case the interaction of (.) with the environmental degrees of freedom (.)
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Quantum State Control in Cavity QEDllator. What we will be presenting here in a rather general context, with a minimum of technical machinery, is the implementation of two original control schemes which are hitherto nonstandard when guiding quantum systems into some desired target state. However, we do believe that these novel contro
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Solving Schrödinger’s Equation for an Open System and Its Environmentdel for the open system and its environment. We highlight several remarkable features of our approach: its convolutionless formulation, the possibility to derive the corresponding nonlinear version, and the master equation for the ensemble mean. We finally apply it to the standard quantum theory of
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