论文标题
Ultrastrong波导QED带有巨型原子
Ultrastrong waveguide QED with giant atoms
论文作者
论文摘要
带有巨型发射器的量子光学器件显示了一种新的途径,用于观察和操纵波导QED中的非马克维亚特性。在本文中,我们扩展了巨型原子的理论,迄今为止,迄今仅限于扰动光象征制度,以处理超局势耦合制度。使用静态和动力学的极性方法,我们解决了一个巨大原子的低能子空间,该原子与标准旋转波近似之外的欧姆波导耦合。我们通过计算原子频率重归重度的函数来分析系统的平衡特性,该耦合表征了巨型原子的定位 - 偏置量子相变。我们表明,在接触点周围围绕地面状态的虚拟光子是非指数定位的,但作为幂律腐烂。研究了最初激发的巨型原子的动力学,指出了超腹耦合对羔羊移位和自发发射衰减速率的影响。最后,我们对旋转波近似超出所谓的振荡界面状态的存在评论。
Quantum optics with giant emitters has shown a new route for the observation and manipulation of non-Markovian properties in waveguide-QED. In this paper we extend the theory of giant atoms, hitherto restricted to the perturbative light-matter regime, to deal with the ultrastrong coupling regime. Using static and dynamical polaron methods we address the low energy subspace of a giant atom coupled to an Ohmic waveguide beyond the standard rotating wave approximation. We analyze the equilibrium properties of the system by computing the atomic frequency renormalization as a function of the coupling characterizing the localization-delocalization quantum phase transition for a giant atom. We show that virtual photons dressing the ground state are non-exponentially localized around the contact points but decay as a power-law. Dynamics of an initially excited giant atom are studied, pointing out the effects of ultrastrong coupling on the Lamb shift and the spontaneous emission decay rate. Finally we comment on the existence of the so-called oscillating bound states beyond the rotating wave approximation.