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Decoherence induced by non-Markovian noise in a nonequilibrium environment

机译:非马崎噪声在非QuibibriaM环境中引起的破解

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摘要

We investigate theoretically the dynamical dephasing of a quantum system induced by non-Markovian noise in a nonequilibrium environment. We derive the closed equation of the dephasing factor for the quantum system under the nonstationary non-Markovian dichotomic noise environment. It is shown that the nonequilibrium feature of the environment gives rise to a time-dependent frequency shift and suppresses the dynamical dephasing of the quantum system and the environmental backaction of coherence. The memory effect of the environmental noise can reduce the dynamical dephasing of the quantum system and make the coherent backaction from the environment prominent. The non-Markovian feature of the environment, however, may not result in non- Markovian behavior in the dephasing dynamics of the quantum system.
机译:理论上,我们调查非马上噪声在非核状环境中诱导的量子系统的动态去除。 我们在非营养的非马上二象噪声环境下得出了量子系统的闭合方程的闭合方程。 结果表明,环境的非预测特征产生了时间依赖的频移,并抑制了量子系统的动态去除和相干的环境备率。 环境噪声的记忆效应可以降低量子系统的动态脱离,并使环境突出的相干备份。 然而,环境的非马洛维维亚特征可能不会导致量子系统的不同动力学中的非马尔可夫行为。

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