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Solving the spin-boson model of strong dissipation with flexible random-deterministic scheme

机译:用弹性随机确定方案求解强耗散自旋玻色子模型

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The zero-temperature dynamics of the spin-boson model with strong dissipation has been a challenging problem for more than 20 years. To solve this and quantum dynamics of dissipative systems at large, we recently proposed a mixed random-deterministic method. This scheme has been successfully used to simulate the time evolution of the spin-boson model at zero temperature for weak to moderate dissipation. For a better numerical performance, the approach is further modified so that it is flexible to convert a certain part of the random treatment to a deterministic one a la hierarchical equations. Applying the new method to the strong dissipated spin-boson model at zero temperature, we observe that the population in the localized state obeys a simple decay dynamics and the time scale is proportional to the reciprocal of the cutoff frequency. (c) 2008 American Institute of Physics.
机译:具有20多年的耗散性强的自旋玻色子模型的零温度动力学一直是一个具有挑战性的问题。为了解决这个问题以及耗散系统的量子动力学,我们最近提出了一种混合随机确定性方法。该方案已成功用于模拟自旋玻色子模型在零温度下从弱到中度耗散的时间演化。为了获得更好的数值性能,对方法进行了进一步修改,以便可以灵活地将随机处理的某些部分转换为确定性的分层方程式。将新方法应用于零温度下的强耗散自玻色子模型,我们观察到局部状态下的种群服从简单的衰减动力学,并且时间尺度与截止频率的倒数成正比。 (c)2008年美国物理研究所。

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