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Number of particle creation and decoherence in the nonideal dynamical Casimir effect at finite temperature
Authors:LC Celeri  F Pascoal  MA de Ponte  MHY Moussa  
Institution:aDepartamento de Física, Universidade Federal de São Carlos, Via Washington Luis, km 235, São Carlos, 13565-905 SP, Brazil;bUniversidade Federal do ABC, Centro de Ciências Naturais e Humanas, R. Santa Adélia 166, Santo André, 09210-170 São Paulo, Brazil;cInstituto de Física, Universidade de São Paulo, Caixa Postal 369, 13566-590 São Carlos, SP, Brazil
Abstract:In this work we investigate the dynamical Casimir effect in a nonideal cavity by deriving an effective Hamiltonian. We first compute a general expression for the average number of particle creation, applicable for any law of motion of the cavity boundary, under the only restriction of small velocities. We also compute a general expression for the linear entropy of an arbitrary state prepared in a selected mode, also applicable for any law of motion of a slow moving boundary. As an application of our results we have analyzed both the average number of particle creation and linear entropy within a particular oscillatory motion of the cavity boundary. On the basis of these expressions we develop a comprehensive analysis of the resonances in the number of particle creation in the nonideal dynamical Casimir effect. We also demonstrate the occurrence of resonances in the loss of purity of the initial state and estimate the decoherence times associated with these resonances. Since our results were obtained in the framework of the perturbation theory, they are restricted, under resonant conditions, to a short-time approximation.
Keywords:Dynamical Casimir effect  Decoherence
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