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Direct observation of valley-polarized topological edge states in designer surface plasmon crystals

机译:直接观察设计者表面等离子体激元晶体中的谷极化拓扑边缘状态

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摘要

The extensive research of two-dimensional layered materials has revealed that valleys, as energy extrema in momentum space, could offer a new degree of freedom for carrying information. Based on this concept, researchers have predicted valley-Hall topological insulators that could support valley-polarized edge states at non-trivial domain walls. Recently, several kinds of photonic and sonic crystals have been proposed as classical counterparts of valley-Hall topological insulators. However, direct experimental observation of valley-polarized edge states in photonic crystals has remained difficult until now. Here, we demonstrate a designer surface plasmon crystal comprising metallic patterns deposited on a dielectric substrate, which can become a valley-Hall photonic topological insulator by exploiting the mirror-symmetry-breaking mechanism. Topological edge states with valley-dependent transport are directly visualized in the microwave regime. The observed edge states are confirmed to be fully valley-polarized through spatial Fourier transforms. Topological protection of the edge states at sharp corners is also experimentally demonstrated.
机译:二维分层材料的广泛研究表明,谷作为动量空间中的能量极值,可以为信息传递提供新的自由度。基于此概念,研究人员预测了可以支持非平凡畴壁的谷极化边缘状态的谷地霍尔拓扑绝缘体。近来,已经提出了几种光子和声子晶体作为山谷-霍尔拓扑绝缘体的经典对应物。然而,到目前为止,直接实验观察光子晶体中的谷极化边缘状态仍然很困难。在这里,我们演示了一个设计器表面等离子体激元晶体,该晶体包括沉积在介电基板上的金属图案,该表面等离子体能通过利用镜像对称性破坏机制而成为山谷霍尔光子拓扑绝缘体。在微波条件下,可以直接看到具有谷值依赖性传输的拓扑边缘状态。通过空间傅立叶变换,确认观察到的边缘状态完全为谷极化的。还通过实验证明了尖角处的边缘状态的拓扑保护。

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