论文标题

观察谷 - 霍尔光子拓扑界面模式的强反向散射

Observation of strong backscattering in valley-Hall photonic topological interface modes

论文作者

Rosiek, Christian Anker, Arregui, Guillermo, Vladimirova, Anastasiia, Albrechtsen, Marcus, Lahijani, Babak Vosoughi, Christiansen, Rasmus Ellebæk, Stobbe, Søren

论文摘要

光的独特特性是光子量子技术,光学互连和广泛的新型传感器的视觉,但是当今的关键限制因素是由于吸收或对缺陷的反向散射而造成的损失。拓扑光子学的最新发展促进了由拓扑界面模式制成的反向散射保护的波导的视野,但是,令人惊讶的是,迄今为止,其传播损失的测量值尚无。在这里,我们报告了山谷拓扑拓扑造型波导的慢灯状态中损失的测量,并没有发现拓扑保护防止无处不在的结构缺陷的反向散射的迹象。我们对拓扑波导散布的光像形象形象,发现传播损失是由于安德森定位所致。在光学结构域中没有内在吸收的材料提出的唯一光子拓扑指导是量子旋转式霍尔和山谷孔界面状态,但前者表现出强大的平面外损失,因此我们的工作提出了有关对互惠光谱中拓扑保护的现实世界价值的基本问题。

The unique properties of light underpin the visions of photonic quantum technologies, optical interconnects, and a wide range of novel sensors, but a key limiting factor today is losses due to either absorption or backscattering on defects. Recent developments in topological photonics have fostered the vision of backscattering-protected waveguides made from topological interface modes, but, surprisingly, measurements of their propagation losses were so far missing. Here we report on measurements of losses in the slow-light regime of valley-Hall topological waveguides and find no indications of topological protection against backscattering on ubiquitous structural defects. We image the light scattered out from the topological waveguides and find that the propagation losses are due to Anderson localization. The only photonic topological waveguides proposed for materials without intrinsic absorption in the optical domain are quantum spin-Hall and valley-Hall interface states, but the former exhibits strong out-of-plane losses, and our work therefore raises fundamental questions about the real-world value of topological protection in reciprocal photonics.

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