Phase driven exact and unconventional superradiance phase transition in non-Hermitian cascaded Rabi cavities

Shujie Cheng, Shuai-Peng Wang, G. D. M. Neto, Gao Xianlong
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Abstract

This work reports the phase driven symmetry breaking and exact and unconventional superradiance phase transition in the non-Hermitian cascaded Rabi cavities. The non-Hermiticity is introduced in the coupling phase (denoted by $\varphi$) between the atom and the optical field. The exactness refers to the fact that the superradiance phase boundary is obtained analytically and verified by the observables. The unconventionality is reflected in that when $|\varphi|=\frac{\pi}{4}$ or $|\varphi|=\frac{3\pi}{4}$, the phase boundary is uniquely determined by $\mathcal{J}=\frac{1}{2}$ (where $\mathcal{J}$ is the dimensionless cavity coupling strength) and is independent of the atom-optical field coupling strength $g$. For other $\varphi$, the phase boundary is determined by $\mathcal{J}$ and the dimensionless atom-optical field coupling strength $g$ together. Besides, we find that there are phase driven first-order and second-order superradiance phase transitions, and the quantum criticality for the second-order superradiance phase transition is studied. In addition, the experimental feasibility is discussed. This work will stimulate the studies of non-Hermitian superradiance quantum phase transitions and their experimental realizations, as well as the underlying universality class of phase transitions.
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非赫米提级联拉比空腔中的相位驱动精确和非常规超光度相变
这项工作报告了非ermitian级联拉比空腔中的相驱动对称性破缺以及精确和非常规超辐射相变。原子与光场之间的耦合相(用$\varphi$表示)引入了非恒性。精确性指的是超辐照度相边界是通过分析得到的,并由观测数据验证。其非常规性体现在当$|\varphi|=\frac{\pi}{4}$或$|\varphi|=\frac{3\pi}{4}$时,相边界由$\mathcal{J}=\frac{1}{2}$(其中$\mathcal{J}$为无维度空穴耦合强度)唯一确定,并且与原子-光场耦合强度$g$无关。对于其他的$\varphi$,相边界由$\mathcal{J}$和无量纲原子-光场耦合强度$g$共同决定。此外,我们还发现存在相驱动的一阶和二阶超辐照度相变,并研究了二阶超辐照度相变的量子临界性。此外,还讨论了实验的可行性。这项工作将促进对非赫米特超辐照量子相变及其实验实现的研究,以及对相变的基本普遍性类的研究。
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