论文标题
通过量身定制的远程相互作用获得诱导的拓扑响应
Gain Induced Topological Response via Tailored Long-range Interactions
论文作者
论文摘要
量身定制物理系统组成元素之间跳跃相互作用的能力可以使观察到异常现象,而这些现象在标准环境中否则无法访问。在这方面,许多最近的理论研究表明,短期或远程复杂交换常数中的不对称性可能会导致违反直觉效应,例如,即使没有自旋1/2或体积构成对应关系的分解,Kramer退化的可能性即使是可能的。在这里,我们展示了如何通过利用非热概念来实现这种量身定制的不对称相互作用,从而实现了由光学增益引起的一类拓扑行为。作为演示,我们实施了Haldane模型,Haldane模型是一种依赖不对称的长距离跳跃的规范晶格,以展示量子厅行为而没有净外部磁通量。在此晶格中观察到的拓扑响应是增益和被动但相同结构中消失的结果。我们的发现不仅能够实现与量身定制的相互作用相关的一系列非平凡现象,而且还可以打开途径,以研究在存在量子噪声的情况下增益和非线性在拓扑系统中的作用。
The ability to tailor the hopping interactions between the constituent elements of a physical system could enable the observation of unusual phenomena that are otherwise inaccessible in standard settings. In this regard, a number of recent theoretical studies have indicated that an asymmetry in either the short- or long-range complex exchange constants can lead to counterintuitive effects, for example, the possibility of a Kramer's degeneracy even in the absence of spin 1/2 or the breakdown of the bulk-boundary correspondence. Here, we show how such tailored asymmetric interactions can be realized in photonic integrated platforms by exploiting non-Hermitian concepts, enabling a class of topological behaviors induced by optical gain. As a demonstration, we implement the Haldane model, a canonical lattice that relies on asymmetric long-range hopping in order to exhibit quantum Hall behavior without a net external magnetic flux. The topological response observed in this lattice is a result of gain and vanishes in a passive but otherwise identical structure. Our findings not only enable the realization of a wide class of non-trivial phenomena associated with tailored interactions, but also opens up avenues to study the role of gain and nonlinearity in topological systems in the presence of quantum noise.