论文标题

混合耦合光机电辅助非邻次光子封锁

Hybrid coupling optomechanically assisted nonreciprocal photon blockade

论文作者

Gao, Yong-Pan, Wang, Chuan

论文摘要

现在,研究界对量子信息科学中开放量子系统的属性进行了更广泛的研究,这是各种应用程序的基本问题。通常,开放量子系统的状态可能会因变质而干扰,这将降低量子信息处理中的保真度。因此,最好消除环境的影响。但是,作为复合系统的一部分,环境系统的合理使用可能对量子信息处理有益。在这里,我们从理论上研究了环境引起的量子非线性和能量光谱调谐方法。我们发现,混合耗散和色散的光学机械系统的耗散耦合可以在跨柯尔相互作用形式中诱导环境和系统之间的耦合。当对称性通过定向泵送环境破裂时,该系统在光子激发期间表现出非转录行为,以及在窃窃私语模式微博的顺时针和逆时针模式的光子激发和光子阻滞中表现出非转录行为。此外,我们认为,跨凯尔耦合也可以在量子信息处理和量子模拟的更广泛的区域中使用。

The properties of open quantum system in quantum information science is now extensively investigated more generally by the research community as a fundamental issue for a variety of applications. Usually, the states of the open quantum system might be disturbed by the decoherence which will reduce the fidelity in the quantum information processing. So it is better to eliminate the influence of the environment. However, as part of the composite system, rational use of the environment system could be beneficial to quantum information processing. Here we theoretically studied the environment induced quantum nonlinearity and energy spectrum tuning method in the optomechanical system. And we found that the dissipation coupling of the hybrid dissipation and dispersion optomechanical system can induce the coupling between the environment and system in the cross- Kerr interaction form. When the symmetry is broken with a directional pumping environment, the system exhibits the non-reciprocal behavior during the photon excitation and photon blockade for the clockwise and counterclockwise modes of the whispering-gallery mode microcavity. Furthermore, we believe that the cross-Kerr coupling can also be used in a more widely region in quantum information processing and quantum simulation.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源