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Quantum decoherence and entanglement induced by nonlinear dissipative environment

机译:非线性耗散环境引起的量子退相干和纠缠

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摘要

The analytical description of the dynamics of a nonlinear atom-field system described by a diagonal f-deformed Jaynes-Cummings model for a chosen initial state is obtained. The purity loss of the global system, and the atomic and field subsystems are discussed. Information on entanglement between the field and matter is studied by comparing the results for mutual entropy, which is a measure of the total correlation, and the negativity as a measure of the amount of entanglement. It is found that the nonlinearity of the dissipation tends to accelerate the decoherence of the global, field, and atomic states. In addition, we find that the so-called entanglement sudden death can occur when both of the nonlinearity couplings between the cavity field and the dissipation are combined.
机译:对于选定的初始状态,获得了由对角f形变形的Jaynes-Cummings模型描述的非线性原子场系统动力学的解析描述。讨论了全局系统以及原子和场子系统的纯度损失。通过比较互熵的结果来研究场与物质之间的纠缠信息,互熵是总相关性的度量,而负性则是纠缠量的度量。发现耗散的非线性趋向于加速整体态,场态和原子态的退相干。此外,我们发现,如果将腔场和耗散之间的非线性耦合结合在一起,就会发生所谓的纠缠突然死亡。

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