论文标题
超局部和深度耦合方案中光系统系统的纯粹调整
Pure Dephasing of Light-Matter Systems in the Ultrastrong and Deep-Strong Coupling Regimes
论文作者
论文摘要
纯dephasing源自量子系统和环境之间的非隔离信息交换,并在光谱和量子信息技术中发挥着关键作用。通常,纯dephasing构成了量子相关性衰减的主要机制。在这里,我们研究了杂交量子系统的一个组件之一的纯纯度如何影响系统过渡的降低速率。我们发现,反过来,在光系统系统的情况下,这种相互作用可以显着影响描述子系统的变化的随机扰动形式,具体取决于所采用的仪表。当相互作用与子系统的裸共振频率相媲美时,忽略这个问题可能会导致错误和非物理结果,该子系统与超局势和深度耦合方案相对应。我们提出了两个型腔量化电动力学的典型模型的结果:量子狂犬和霍普菲尔德模型。
Pure dephasing originates from the non-dissipative information exchange between quantum systems and environments, and plays a key-role in both spectroscopy and quantum information technology. Often pure dephasing constitutes the main mechanism of decay of quantum correlations. Here we investigate how pure dephasing of one of the components of a hybrid quantum system affects the dephasing rate of the system transitions. We find that, in turn, the interaction, in the case of a light-matter system, can significantly affect the form of the stochastic perturbation describing the dephasing of a subsystem, depending on the adopted gauge. Neglecting this issue can lead to wrong and unphysical results when the interaction becomes comparable to the bare resonance frequencies of subsystems, which correspond to the ultrastrong and deep-strong coupling regimes. We present results for two prototypical models of cavity quantun electrodynamics: the quantum Rabi and the Hopfield model.