光子
物理
封锁
量子光学
克尔效应
非谐性
量子
光子学
光子反聚束
光学腔
量子力学
光学
非线性系统
激光器
化学
受体
生物化学
作者
Fen Zou,Deng-Gao Lai,Jie‐Qiao Liao
出处
期刊:Optics Express
[Optica Publishing Group]
日期:2020-04-20
卷期号:28 (11): 16175-16175
被引量:11
摘要
We study the photon blockade effect in a coupled cavity system, which is formed by a linear cavity coupled to a Kerr-type nonlinear cavity via a photon-hopping interaction. We explain the physical phenomenon from the viewpoint of the conventional and unconventional photon blockade effects. The corresponding physical mechanisms of the two kinds of photon blockade effects are based on the anharmonicity in the eigenenergy spectrum and the destructive quantum interference between two different transition paths, respectively. In particular, we find that the photon blockade via destructive quantum interference also exists in the conventional photon blockade regime, and that the unconventional photon blockade occurs in both the weak- and strong-Kerr nonlinearity cases. The photon blockade effect can be observed by calculating the second-order correlation function of the cavity field. This model is general and hence it can be implemented in various experimental setups such as coupled optical-cavity systems, coupled photon-magnon systems, and coupled superconducting-resonator systems. We present some discussions on the experimental feasibility.
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