腔量子电动力学
物理
量子光学
哈密顿量(控制论)
光学腔
量子
相变
光学相空间
超冷原子
量子涨落
量子力学
压缩相干态
开放量子系统
激光器
相干态
数学优化
数学
作者
Gui‐Lei Zhu,Chang‐Sheng Hu,Hui Wang,Wei Qin,Xin‐You Lü,Franco Nori
标识
DOI:10.1103/physrevlett.132.193602
摘要
We demonstrate the emergence of nonreciprocal superradiant phase transitions and novel multicriticality in a cavity quantum electrodynamics (QED) system, where a two-level atom interacts with two counter-propagating modes of a whispering-gallery-mode (WGM) microcavity. The cavity rotates at a certain angular velocity, and is directionally squeezed by a unidirectional parametric pumping $\chi^{(2)}$ nonlinearity. The combination of cavity rotation and directional squeezing leads to nonreciprocal first- and second-order superradiant phase transitions. These transitions do not require ultrastrong atom-field couplings and can be easily controlled by the external pump field. Through a full quantum description of the system Hamiltonian, we identify two types of multicritical points in the phase diagram, both of which exhibit controllable nonreciprocity. These results open a new door for all-optical manipulation of superradiant transitions and multicritical behaviors in light-matter systems, with potential applications in engineering various integrated nonreciprocal quantum devices
科研通智能强力驱动
Strongly Powered by AbleSci AI