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首页> 外文期刊>The Journal of Chemical Physics >Quantum dephasing of a two-state system by a nonequilibrium harmonic oscillator
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Quantum dephasing of a two-state system by a nonequilibrium harmonic oscillator

机译:非平衡谐波振荡器对二态系统的量子相移

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摘要

In this paper, we investigate coherent quantum dynamics in a nonequilibrium environment. We focus on a two-state quantum system strongly coupled to a single classical environmental oscillator, and explore the effect of nonstationary statistical properties of the oscillator on the quantum evolution. A simple nonequilibrium model, consisting of an oscillator with a well-defined initial phase which undergoes subsequent diffusion, is introduced and studied. Approximate but accurate analytic expressions for the evolution of the off-diagonal density matrix element of the quantum system are derived in the second-order cumulant approximation. The effect of the initial phase choice on the subsequent quantum evolution is quantified. It is observed that the initial phase can have a significant effect on the preservation of coherence on short time scales, suggesting this variable as a control parameter for optimizing coherence in many-body quantum systems.
机译:在本文中,我们研究了非平衡环境中的相干量子动力学。我们专注于与单个经典环境振荡器强耦合的两态量子系统,并研究振荡器的非平稳统计特性对量子演化的影响。引入并研究了一个简单的非平衡模型,该模型由一个具有明确定义的初始相位的振荡器组成,该初始相位经历了随后的扩散。在二阶累积量逼近中得出了量子系统的非对角密度矩阵元素的演化的近似但精确的解析表达式。初始相选择对随后的量子演化的影响被量化。可以观察到,初始阶段可以在短时间尺度上对保持相干性产生重大影响,这表明该变量是在多体量子系统中优化相干性的控制参数。

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