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Quantum dynamics simulations in an ultraslow bath using hierarchy of stochastic Schrodinger equations

机译:使用STOCHAST SCHRODINGER方程的层次结构在超声浴中的量子动态模拟

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摘要

The hierarchy of stochastic Schrodinger equation, previously developed under the unpolarised initial bath states, is extended in this paper for open quantum dynamics under polarised initial bath conditions. The method is proved to be a powerful tool in investigating quantum dynamics exposed to an ultraslow Ohmic bath, as in this case the hierarchical truncation level and the random sampling number can be kept at a relatively small extent. By systematically increasing the system-bath coupling strength, the symmetric Ohmic spin-boson dynamics is investigated at finite temperature, with a very small cut-off frequency. It is confirmed that the slow bath makes the system dynamics extremely sensitive to the initial bath conditions. The localisation tendency is stronger in the polarised initial bath conditions. Besides, the oscillatory coherent dynamics persists even when the system-bath coupling is very strong, in correspondence with what is found recently in the deep sub-Ohmic bath, where also the low-frequency modes dominate.
机译:本文在极化初始浴条件下开放量子动态,在非极化的初始浴状态下开发的随机施罗德格方程的层次。该方法被证明是调查暴露于超出欧姆浴的量子动态的强大工具,正如在这种情况下,分层截断水平和随机采样数可以保持在相对小的程度。通过系统地增加系统浴耦合强度,在有限温度下研究了对称欧姆自旋 - 玻色子动力学,截止频率非常小。确认慢浴使系统动态极其对初始浴条件敏感。偏振初始浴条件中的定位趋势较强。此外,振荡相干动力学仍然存在,即使系统浴耦合非常强,与最近在深次欧姆浴中发现的内容相对应,其中低频模式占主导地位。

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