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Z(2) Photonic Topological Insulators in the Visible Wavelength Range for Robust Nanoscale Photonics

机译:Z(2)鲁棒纳米级光子型可见波长范围内的光子拓扑绝缘体

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摘要

Topological photonics provides an ideal platform for demonstrating novel band topology concepts, which are also promising for robust waveguiding, communication, and computation applications. However, many challenges such as extremely large device footprint and functionality at short wavelengths remain to be solved which are required to make practical and useful devices that can also couple to electronic excitations in many important organic and inorganic semiconductors. In this letter, we report an experimental realization of Z(2) photonic topological insulators with their topological edge state energies spanning across the visible wavelength range including in the sub-500 nm regime, which requires highly optimized nanofabrication. The photonic structures are based on deformed hexagonal lattices with preserved 6-fold rotational symmetry patterned on suspended SiNx membranes. The experimentally measured energy-momentum dispersion of the topological lattices directly shows topological band inversion by the swapping of the brightness of the bulk energy bands, and also the helical edge states when the measurement is taken near the topological interface. The robust topological transport of the helical edge modes in real space is demonstrated by successfully guiding circularly polarized light beams unidirectionally through sharp kinks without significant signal loss. This work paves the way for small footprint photonic topological devices working in the short wavelength range that can also be utilized to couple to excitons for unconventional light-matter interactions at the nanoscale.
机译:拓扑光子学为演示新颖的带拓扑概念提供理想的平台,这也是强大的波导,通信和计算应用的承诺。然而,许多挑战如非常大的装置足迹和短波长的功能仍然可以解决,这是制造实用的和有用的装置,其也需要耦合到许多重要的有机和无机半导体中的电子激发。在这封信中,我们报告了Z(2)光子拓扑绝缘体的实验性实现,其拓扑边缘状态能量跨越可见波长范围,包括在亚500nm制度中,这需要高度优化的纳米制造。光子结构基于变形的六边形格子,其保存的6倍旋转对称在悬浮的SINX膜上图案化。通过在拓扑界面附近进行测量时,拓扑格子的实验测量的拓扑晶格的能量动量分散通过交换散装能带的亮度直接示出了拓扑带反转。通过在没有显着信号损失的情况下成功引导圆形偏振光束,通过显着信号丢失,通过成功引导圆偏振光束来证明实际空间中螺旋边缘模式的鲁棒拓扑传输。这项工作为在短波长范围内工作的小型占地面积光子拓扑装置铺平了道路,该拓扑拓扑器件也可以用于耦合到纳米级的非常规光物质相互作用的激子。

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