束缚态
物理
Atom(片上系统)
波导管
放松(心理学)
上下界
光子学
波函数
量子
量子力学
自发辐射
相(物质)
量子光学
工作(物理)
马尔可夫过程
量子退相干
节点(物理)
能量(信号处理)
功能(生物学)
原子物理学
零(语言学)
领域(数学)
国家(计算机科学)
光谱(功能分析)
联轴节(管道)
动力学(音乐)
开放量子系统
拉比周期
相对相位
量子动力学
作者
Jingying Sun,Chunzhi Cui,Yunfeng Li,Shuang Xu,Cheng Shang,Y. H. Zhou,H. Z. Shen
摘要
We investigate the dressed bound states (DBS) in an open cavity with a whispering-gallery-mode microring coupled to a two-level atom and a waveguide with a mirror at the right end. We demonstrate that the non-Hermiticity of an open cavity facilitates the formation of the DBS, which consists of the vacancy-like DBS and Friedrich-Wintgen DBS. By deriving analytical conditions for these DBS, we show that when a two-level atom couples to the standing-wave mode that corresponds to a node of the photonic wave function the vacancy-like DBS occur, which are characterized by null spectral density at cavity resonance. Conversely, Friedrich-Wintgen DBS can be realized by continuously adjusting system parameters and indicated by the disappearance of the Rabi peak in the emission spectrum, which is a distinctive feature in the strong-coupling regime. Moreover, we extend our analysis to the non-Markovian regime and find that our results are consistent with those obtained under the Markovian approximation in the wideband limit. In the non-Markovian regime, we analyze DBS for both zero and non-zero accumulated phase factors. For zero accumulated phase factors, the non-Markovian regime exhibits higher peak values and longer relaxation times for vacancy-like DBS compared to the Markovian regime, where the Friedrich-Wintgen DBS are absent in the non-Markovian case. Finally, we establish the correspondence between the energy spectrum and bound state conditions for non-zero accumulated phase factors and analyze the influence of various parameters on non-Markovian bound states. Our work exhibits bound state manipulations through non-Markovian open quantum system, which holds great potential for building high-performance quantum devices for applications such as sensing, photon storage, and nonclassical light generation.
科研通智能强力驱动
Strongly Powered by AbleSci AI