Gao Xue-Chen, Wu Xiao-Jie, Bai Cheng-Hua, Wu Shao-Xiong, Yu Chang-Shui
Opt Express. 2023 Oct 23;31(22):36796-36809. doi: 10.1364/OE.501689.
We propose a scheme to manipulate strong and nonreciprocal photon blockades in asymmetrical Fabry-Perot cavity with a Λ-type three-level atom. Utilizing the mechanisms of both conventional and unconventional blockade, the strong photon blockade is achieved by the anharmonic eigenenergy spectrum brought by Λ-type atom and the destructive quantum interference effect induced by a microwave field. By optimizing the system parameters, the manipulation of strong photon blockade over a wide range of cavity detuning can be realized. Using spatial symmetry breaking introduced by the asymmetry of cavity, the direction-dependent nonreciprocal photon blockade can be achieved, and the nonreciprocity can reach the maximum at optimal cavity detuning. In particular, manipulating the occurring position of nonreciprocal photon blockade can be implemented by simply adjusting the cavity detuning. Our scheme provides feasible access for generating high-quality nonreciprocal single-photon sources.
我们提出了一种利用Λ型三能级原子在非对称法布里-珀罗腔中操控强且非互易光子阻塞的方案。利用传统和非传统阻塞机制,强光子阻塞通过Λ型原子带来的非谐本征能谱以及微波场诱导的相消量子干涉效应来实现。通过优化系统参数,可以在宽范围的腔失谐情况下实现对强光子阻塞的操控。利用腔的不对称性引入的空间对称性破缺,可以实现方向依赖的非互易光子阻塞,并且在最佳腔失谐时非互易性可达到最大值。特别地,通过简单调整腔失谐就可以实现对非互易光子阻塞发生位置的操控。我们的方案为产生高质量非互易单光子源提供了可行途径。