论文标题

可调的二维激光阵列,带有零相锁定

Tunable two-dimensional laser arrays with zero-phase locking

论文作者

Teo, Wei Xin, Zhu, Weiwei, Gong, Jiangbin

论文摘要

通过利用高阶拓扑绝缘子(HOTI)物理学和所谓的非铁皮皮肤效应(NHSE)的相互作用,可以证明二维(2D)激光阵列可以在大规模上实现。高阶拓扑允许放大并因此激发受条带隙保护的单模;而众所周知的NHSE在非热门系统中沿偏见的方向积累了人口,但引入了与角模式的拓扑定位竞争。通过适当地调整系统参数并仅在一个站点上抽水,出现了一个拓扑保护的激光模式,跨两个维度出现了跨两个维度,其功率可通过调节泵的强度来广泛调节。计算研究清楚地表明,这样设计的激光模式是稳定的,即使考虑到该疾病后,最近激光位点之间的相位差也锁定在零。形成2D拓扑激光阵列的激光模式的总功率与适应HOTI相的2D晶格区域成正比。根据现有的实验,我们进一步建议将耦合的光环谐振器作为实现大规模2D激光阵列的有前途的平台。

Two-dimensional (2D) laser arrays are shown to be achievable at a large scale by exploiting the interplay of higher-order topological insulator (HOTI) physics and the so-called non-Hermitian skin effect (NHSE). The higher-order topology allows for the amplification and hence lasing of a single-mode protected by a band gap; whereas the NHSE, widely known to accumulate population in a biased direction in non-Hermitian systems, is introduced to compete with the topological localization of corner modes. By tuning the system parameters appropriately and pumping at one site only, a single topologically protected lasing mode delocalized across over two dimensions emerges, with its power widely tunable by adjusting the pump strength. Computational studies clearly indicate that the lasing mode thus engineered is stable, and the phase difference between nearest lasing sites is locked at zero, even after the disorder is accounted for. The total power of the lasing mode forming a 2D topological laser array is proportional to the area of the 2D lattice accommodating a HOTI phase. Based on existing experiments, we further propose to use coupled optical ring resonators as a promising platform to realize large-scale 2D laser arrays.

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