论文标题

强烈的光学耦合方程式现象学Lindblad主方程的故障签名

Breakdown signatures of the phenomenological Lindblad master equation in the strong optomechanical coupling regime

论文作者

Betzholz, Ralf, Taketani, Bruno G., Torres, Juan Mauricio

论文摘要

事实证明,主方程式的lindblad形式是描述与量子感兴趣系统相互作用的环境影响的最方便方法之一。对于单个系统,表征这些交互作用的跳跃操作员通常会采用简单的解释。但是,对于耦合系统,这些操作员采用明显不同的形式,并且仅作用于各个子系统的跳跃操作员无法描述全部动力学。在这项工作中,我们研究了主方程的共同现象学模型与光学机械系统更严格的装扮大师方程之间的差异。我们提供了一种分析方法,以获得模型的系统的吸收光谱,并在不良腔和超强耦合极限中显示现象学模型的分解。我们仔细讨论了两个模型中光腔及其在其预测吸收光谱差异中的作用的间接分类。我们的工作提供了一个简单的实验测试,以确定是否可以使用更简单的现象学模型来描述系统,并且是朝着更好地理解开放量器系统动力学的子系统之间耦合的作用的一步。

The Lindblad form of the master equation has proven to be one of the most convenient ways to describe the impact of an environment interacting with a quantum system of interest. For single systems the jump operators characterizing these interactions usually take simple forms with a clear interpretation. However, for coupled systems these operators take significantly different forms and the full dynamics cannot be described by jump operators acting on the individual subsystems only. In this work, we investigate the differences between a common phenomenological model for the master equation and the more rigorous dressed-state master equation for optomechanical systems. We provide an analytical method to obtain the absorption spectrum of the system for both models and show the breakdown of the phenomenological model in both the bad cavity and the ultra-strong coupling limit. We present a careful discussion of the indirect dephasing of the optical cavity in both models and its role in the differences of their predicted absorption spectra. Our work provides a simple experimental test to determine whether the simpler phenomenological model can be used to describe the system and is a step forward toward a better understanding of the role of the coupling between subsystems for open-quantum-system dynamics.

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