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拓扑边缘态的非线性控制开关观测

Observation of nonlinearity-controlled switching of topological edge states.

作者信息

Arkhipova Antonina A, Ivanov Sergey K, Zhuravitskii Sergey A, Skryabin Nikolay N, Dyakonov Ivan V, Kalinkin Alexander A, Kulik Sergey P, Kompanets Victor O, Chekalin Sergey V, Kartashov Yaroslav V, Zadkov Victor N

机构信息

Institute of Spectroscopy, Russian Academy of Sciences, 108840, Troitsk, Moscow, Russia.

Faculty of Physics, Higher School of Economics, 105066 Moscow, Russia.

出版信息

Nanophotonics. 2022 Jul 12;11(16):3653-3661. doi: 10.1515/nanoph-2022-0290. eCollection 2022 Sep.

Abstract

We report the experimental observation of the periodic switching of topological edge states between two dimerized fs-laser written waveguide arrays. Switching occurs due to the overlap of the modal fields of the edge states from topological forbidden gap, when they are simultaneously present in two arrays brought into close proximity. We found that the phenomenon occurs for both strongly and weakly localized edge states and that switching rate increases with decreasing spacing between the topological arrays. When topological arrays are brought in contact with nontopological ones, switching in topological gap does not occur, while one observes either the formation of nearly stationary topological interface mode or strongly asymmetric diffraction into the nontopological array depending on the position of the initial excitation. Switching between topological arrays can be controlled and even completely arrested by increasing the peak power of the input signal, as we observed with different array spacings.

摘要

我们报告了在两个二聚化飞秒激光写入波导阵列之间拓扑边缘态周期性切换的实验观察结果。当拓扑禁带中的边缘态的模态场重叠,且它们同时存在于两个紧密靠近的阵列中时,就会发生切换。我们发现,这种现象在强局域和弱局域边缘态中均会出现,并且切换速率随着拓扑阵列之间间距的减小而增加。当拓扑阵列与非拓扑阵列接触时,拓扑禁带中不会发生切换,而根据初始激发的位置,会观察到要么形成几乎静止的拓扑界面模式,要么向非拓扑阵列发生强烈不对称衍射。正如我们在不同阵列间距下所观察到的,通过增加输入信号的峰值功率,可以控制甚至完全阻止拓扑阵列之间的切换。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3446/11501119/5c5da7971019/j_nanoph-2022-0290_fig_001.jpg

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