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首页> 外文期刊>The Journal of Chemical Physics >Benchmarking semiclassical and perturbative methods for real-time simulations of cavity-bound emission and interference
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Benchmarking semiclassical and perturbative methods for real-time simulations of cavity-bound emission and interference

机译:基准测试分配的腔 - 结束发射和干扰的实时模拟方法

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摘要

We benchmark a selection of semiclassical and perturbative dynamics techniques by investigating the correlated evolution of a cavity-bound atomic system to assess their applicability to study problems involving strong light-matter interactions in quantum cavities. The model system of interest features spontaneous emission, interference, and strong coupling behavior and necessitates the consideration of vacuum fluctuations and correlated light-matter dynamics. We compare a selection of approximate dynamics approaches including fewest switches surface hopping (FSSH), multitrajectory Ehrenfest dynamics, linearized semiclassical dynamics, and partially linearized semiclassical dynamics. Furthermore, investigating self-consistent perturbative methods, we apply the Bogoliubov-Born-Green-Kirkwood-Yvon hierarchy in the second Born approximation. With the exception of fewest switches surface hopping, all methods provide a reasonable level of accuracy for the correlated light-matter dynamics, with most methods lacking the capacity to fully capture interference effects. Published under license by AIP Publishing.
机译:通过研究腔边原子系统的相关演化来评估它们对涉及量子腔中强烈浅亮相的问题的适用性的相关演化来基准进行分解的分配和扰动动力学技术。利益模型系统具有自发发射,干扰和强耦合行为,并且需要考虑真空波动和相关的灯具动态。我们比较各种近似动态方法,包括最少的开关表面跳跃(FSSH),多批读的EHFEST动态,线性化半思法动力学和部分线性化的半化动力学。此外,研究自我一致的扰动方法,我们在第二个出生的近似下应用Bogoliubov出生的绿色kirkwood-yvon等级。除了最少的开关表面跳跃之外,所有方法都为相关的灯具动态提供了合理的准确性,大多数方法缺少完全捕获干扰效应的容量。通过AIP发布在许可证下发布。

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