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Nonperturbative approach to system-reservoir dynamics in the strong-coupling regime and non-Markovian dynamics

机译:强耦合状态下非扰动方法的系统-储层动力学和非马尔可夫动力学

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摘要

We present a method to derive an exact master equation for a bosonic system coupled to a set of other bosonic systems, which plays the role of the reservoir, under the strong-coupling regime, i.e., without resorting to either the rotating-wave or secular approximations. Working with phase-space distribution functions, we verify that the dynamics have two different behaviors. Considering that the initial state is a concentrated wave packet in phase space, we see that the center of this wave packet follows classical mechanics while its shape gets distorted. Moreover, we show that this distortion is caused by the counter-rotating terms as well as thermal fluctuations. Finally, we discuss conditions for non-Markovian dynamics.
机译:我们提出了一种方法,可以在耦合强的情况下,即不求助于旋转波或世俗的情况下,导出与一组其他的玻色系统耦合的玻色系统的精确主方程。近似值。使用相空间分布函数,我们验证了动力学具有两种不同的行为。考虑到初始状态是相空间中的集中波包,我们看到该波包的中心遵循经典力学,而其形状却发生了变形。此外,我们表明这种变形是由反向旋转项以及热波动引起的。最后,我们讨论了非马尔可夫动力学的条件。

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