论文标题

在驱动分流量子网络中的非偏置扩增过渡

Nonreciprocal Amplification Transition in a Driven-Dissipative Quantum Network

论文作者

Tian, Mingsheng, Sun, Fengxiao, Shi, Kaiye, Xu, Haitan, He, Qiongyi, Zhang, Wei

论文摘要

我们研究了驱动驱动性量子网络的运输特性,其中多个骨器腔(如光子微腔)通过具有单向传输的非偏置总线耦合。对于腔之间的短距离耦合,非偏置扩增的发生可以与基础动态汉密尔顿的拓扑相变相关。但是,对于远程耦合,我们发现非偏置放大过渡会远离拓扑相变。尽管如此,我们表明,即使在远程耦合极限下,非偏型放大过渡也可以连接到具有手性对称性的辅助哈密顿量的零能量边缘状态。我们还研究了稳定性,从短程到远程耦合的跨界以及非偏置扩增的带宽。我们的工作在信号传输和扩增中具有潜在的应用,并且还为具有远距离耦合和非平凡边界效应的非热门系统打开了一个窗口。

We study the transport properties of a driven-dissipative quantum network, where multiple bosonic cavities such as photonic microcavities are coupled through a nonreciprocal bus with unidirectional transmission. For short-range coupling between the cavities, the occurrence of nonreciprocal amplification can be linked to a topological phase transition of the underlying dynamic Hamiltonian. However, for long-range coupling, we find that the nonreciprocal amplification transition deviates drastically from the topological phase transition. Nonetheless, we show that the nonreciprocal amplification transition can be connected to the emergence of zero-energy edge states of an auxiliary Hamiltonian with chiral symmetry even in the long-range coupling limit. We also investigate the stability, the crossover from short to long-range coupling, and the bandwidth of the nonreciprocal amplification. Our work has potential application in signal transmission and amplification, and also opens a window to non-Hermitian systems with long-range coupling and nontrivial boundary effects.

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