论文标题

观察〜100 THz的0D亚波长度定位模式受弱拓扑保护

Observing 0D subwavelength-localized modes at ~100 THz protected by weak topology

论文作者

Lu, Jinlong, Wirth, Konstantin G., Gao, Wenlong, Heßler, Andreas, Sain, Basudeb, Taubner, Thomas, Zentgraf, Thomas

论文摘要

拓扑光子晶体(TPHC)提供了对光线内置免疫力和无序的免疫力的强大操纵。最近,显示出基于弱拓扑的TPHC遗传了这种鲁棒性,并进一步托管受拓扑受保护的较低维度局部模式。但是,到目前为止尚未证明具有光学频率下拓扑较弱的TPHC。在这里,我们使用散射型扫描近场光学显微镜在具有非平凡Zak相和边缘位错的TPHC中验证接近100 THz的中型零维的中等距离定位。我们表明,由于拓扑较弱,不同扩展的脱位中心会引起类似的强光定位。实验结果由全场模拟支持。除了基本的基本物理学外,我们的结果是基于在主动拓扑纳米光学中基于较弱的拓扑的TPHC以及非线性和量子光学集成设备的基础,这是由于其强大而强大的光定位。

Topological photonic crystals (TPhCs) provide robust manipulation of light with built-in immunity to fabrication tolerances and disorder. Recently, it was shown that TPhCs based on weak topology with a dislocation inherit this robustness and further host topologically protected lower-dimensional localized modes. However, TPhCs with weak topology at optical frequencies have not been demonstrated so far. Here, we use scattering-type scanning near field optical microscopy to verify mid-bandgap zero-dimensional light localization close to 100 THz in a TPhC with nontrivial Zak phase and an edge dislocation. We show that due to the weak topology, differently extended dislocation centers induce similarly strong light localization. The experimental results are supported by full-field simulations. Along with the underlying fundamental physics, our results lay a foundation for the application of TPhCs based on weak topology in active topological nanophotonics, and nonlinear and quantum optic integrated devices due to their strong and robust light localization.

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