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利用合成维度直接提取拓扑 Zak 相

Direct extraction of topological Zak phase with the synthetic dimension.

作者信息

Li Guangzhen, Wang Luojia, Ye Rui, Zheng Yuanlin, Wang Da-Wei, Liu Xiong-Jun, Dutt Avik, Yuan Luqi, Chen Xianfeng

机构信息

State Key Laboratory of Advanced Optical Communication Systems and Networks, School of Physics and Astronomy, Shanghai Jiao Tong University, Shanghai, 200240, China.

Shanghai Research Center for Quantum Sciences, Shanghai, 201315, China.

出版信息

Light Sci Appl. 2023 Mar 29;12(1):81. doi: 10.1038/s41377-023-01126-1.

Abstract

Measuring topological invariants is an essential task in characterizing topological phases of matter. They are usually obtained from the number of edge states due to the bulk-edge correspondence or from interference since they are integrals of the geometric phases in the energy band. It is commonly believed that the bulk band structures could not be directly used to obtain the topological invariants. Here, we implement the experimental extraction of Zak phase from the bulk band structures of a Su-Schrieffer-Heeger (SSH) model in the synthetic frequency dimension. Such synthetic SSH lattices are constructed in the frequency axis of light, by controlling the coupling strengths between the symmetric and antisymmetric supermodes of two bichromatically driven rings. We measure the transmission spectra and obtain the projection of the time-resolved band structure on lattice sites, where a strong contrast between the non-trivial and trivial topological phases is observed. The topological Zak phase is naturally encoded in the bulk band structures of the synthetic SSH lattices, which can hence be experimentally extracted from the transmission spectra in a fiber-based modulated ring platform using a laser with telecom wavelength. Our method of extracting topological phases from the bulk band structure can be further extended to characterize topological invariants in higher dimensions, while the exhibited trivial and non-trivial transmission spectra from the topological transition may find future applications in optical communications.

摘要

测量拓扑不变量是表征物质拓扑相的一项重要任务。由于体边对应关系,它们通常从边缘态的数量获得,或者由于它们是能带中几何相位的积分而从干涉中获得。人们普遍认为,体能带结构不能直接用于获得拓扑不变量。在此,我们在合成频率维度中从Su-Schrieffer-Heeger(SSH)模型的体能带结构中实现了Zak相的实验提取。这种合成SSH晶格是在光的频率轴上构建的,通过控制两个双色驱动环的对称和反对称超模之间的耦合强度来实现。我们测量透射光谱,并获得时间分辨能带结构在晶格位点上的投影,在那里观察到非平凡和平凡拓扑相之间有强烈的对比。拓扑Zak相自然地编码在合成SSH晶格的体能带结构中,因此可以在基于光纤的调制环平台上使用电信波长的激光从透射光谱中通过实验提取。我们从体能带结构中提取拓扑相的方法可以进一步扩展到表征更高维度的拓扑不变量,而拓扑转变所展示的平凡和非平凡透射光谱可能在光通信中有未来的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6782/10050404/9c560fdc697a/41377_2023_1126_Fig1_HTML.jpg

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