揭示相空间中量子布朗粒子的虚过程

S. Maniscalco
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引用次数: 1

摘要

在相空间中研究了量子布朗粒子在谐波势中的短时动力学。提出了一种精确的非马尔可夫解析方法来计算Wigner函数的时间演化。分析了初始压缩态维格纳函数的动力学特性。结果表明,粒子和储层之间的虚拟能量交换,表征了系统-储层相关性不可忽略的非林德布莱德短时间动力学,在相空间中表现出来。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Revealing virtual processes of a quantum Brownian particle in phase space
The short-time dynamics of a quantum Brownian particle in a harmonic potential is studied in phase space. An exact non-Markovian analytic approach to calculate the time evolution of the Wigner function is presented. The dynamics of the Wigner function of an initially squeezed state is analysed. It is shown that virtual exchanges of energy between the particle and the reservoir, characterizing the non-Lindblad short-time dynamics where system–reservoir correlations are not negligible, show up in phase space.
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