4.6 Article

Decoherence and the nature of system-environment correlations

期刊

PHYSICAL REVIEW A
卷 84, 期 6, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevA.84.062121

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  1. International Max Planck Research School (IMPRS) Dresden
  2. GSI Darmstadt

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We investigate system-environment correlations based on the exact dynamics of a qubit and its environment in the framework of pure decoherence (phase damping). We focus on the relation of decoherence and the buildup of system-reservoir entanglement for an arbitrary (possibly mixed) initial qubit state. In the commonly employed regime where the qubit dynamics can be described by a Markov master equation of the Lindblad type, we find that for almost all qubit initial states inside the Bloch sphere, decoherence is complete while the total state is still separable-no entanglement is involved. In general, both separable and entangling decoherence occurs, depending on the temperature and initial qubit state. Moreover, we find situations where classical and quantum correlations periodically alternate as a function of time in the regime of low temperatures.

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