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具有长程耦合的拓扑二聚体链的波函数层析成像

Wave-Function Tomography of Topological Dimer Chains with Long-Range Couplings.

作者信息

Pellerin F, Houvenaghel R, Coish W A, Carusotto I, St-Jean P

机构信息

Département de Physique, Université de Montréal, C.P. 6128, Succursale Centre-Ville, Montréal, Québec H3C 3J7, Canada.

Département de Physique, Ecole Normale Supérieure de Lyon, 46 allée d'Italie, F69007 Lyon, France.

出版信息

Phys Rev Lett. 2024 May 3;132(18):183802. doi: 10.1103/PhysRevLett.132.183802.

DOI:10.1103/PhysRevLett.132.183802
PMID:38759187
Abstract

The ability to tailor with a high accuracy the intersite connectivity in a lattice is a crucial tool for realizing novel topological phases of matter. Here, we report the experimental realization of photonic dimer chains with long-range hopping terms of arbitrary strength and phase, providing a rich generalization of the Su-Schrieffer-Heeger model which, in its conventional form, is limited to nearest-neighbor couplings only. Our experiment is based on a synthetic dimension scheme involving the frequency modes of an optical fiber loop platform. This setup provides direct access to both the band dispersion and the geometry of the Bloch wave functions throughout the entire Brillouin zone allowing us to extract the winding number for any possible configuration. Finally, we highlight a topological phase transition solely driven by a time-reversal-breaking synthetic gauge field associated with the phase of the long-range hopping, providing a route for engineering topological bands in photonic lattices belonging to the AIII symmetry class.

摘要

在晶格中以高精度定制位点间连通性的能力是实现新型拓扑物相的关键工具。在此,我们报告了具有任意强度和相位的长程跳跃项的光子二聚体链的实验实现,这是对Su-Schrieffer-Heeger模型的丰富推广,其传统形式仅限于最近邻耦合。我们的实验基于一种涉及光纤环平台频率模式的合成维度方案。这种设置提供了在整个布里渊区直接获取能带色散和布洛赫波函数几何结构的途径,使我们能够为任何可能的配置提取缠绕数。最后,我们强调了一个仅由与长程跳跃相位相关的时间反演破缺合成规范场驱动的拓扑相变,为在属于AIII对称类的光子晶格中设计拓扑能带提供了一条途径。

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