论文标题

由晶格脱位引起的三维光子拓扑绝缘子

Three-dimensional photonic topological insulator induced by lattice dislocations

论文作者

Lustig, Eran, Maczewsky, Lukas J., Beck, Julius, Biesenthal, Tobias, Heinrich, Matthias, Yang, Zhaoju, Plotnik, Yonatan, Szameit, Alexander, Segev, Mordechai

论文摘要

拓扑绝缘子的标志是拓扑受保护的边缘通道中波的无散射传播。这种运输严格是手性在培养基的外边缘上,因此即使在存在实质性疾病的情况下,也能够绕过尖锐的角落和瑕疵。在光子学中,已经在几个不同的平台上证明了二维拓扑边缘状态,并且正在成为强大的激光,量子设备和其他应用的有前途的工具。然而,到目前为止,三维光子拓扑绝缘子,特别是那些支持拓扑受保护的边缘状态的光子绝缘子,迄今为止仍然没有实验范围。在这里,我们展示了具有受保护拓扑边缘状态的三维光子拓扑绝缘子。螺钉脱位可以实现拓扑保护。为此,我们通过引入附加的模态维度将系统转换为3D光子拓扑绝缘子,利用2D光子波导阵列中合成维度的概念。晶格脱位赋予系统的边缘状态沿三维轨迹传播,拓扑保护类似于强光子拓扑绝缘子。我们的工作为光子科学和技术中的三维拓扑铺平了道路。

The hallmark of topological insulators is the scatter-free propagation of waves in topologically protected edge channels. This transport is strictly chiral on the outer edge of the medium, and therefore capable of bypassing sharp corners and imperfections, even in the presence of substantial disorder. In photonics, two-dimensional topological edge states have been demonstrated on several different platforms, and are emerging as a promising tool for robust lasers, quantum devices, and other applications. However, three-dimensional photonic topological insulators, specifically those supporting topologically protected edge states in all 3D, have thus far remained out of experimental reach. Here, we demonstrate a three-dimensional photonic topological insulator with protected topological edge states. The topological protection is enabled by a screw dislocation. For this purpose, we utilize the concept of synthetic dimensions in a 2D photonic waveguide array by introducing an additional modal dimension to transform the system into a 3D photonic topological insulator. The lattice dislocation endows the system with edge states propagating along three-dimensional trajectories, with topological protection akin to strong photonic topological insulators. Our work paves the way for utilizing three-dimensional topology in photonic science and technology.

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