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◆ Communications Physics2025-11-19· Boundary (topology)

Observation of nonlinear higher-order topological insulators with unconventional boundary truncations

Changming Huang, Alexander V. Kireev, Yuxin Jiang, V. O. Kompanets, Ce Shang, Yaroslav V. Kartashov, S. A. Zhuravitskii, Nikolay N. Skryabin, I. V. Dyakonov, А. A. Калинкин, S. P. Kulik, Fangwei Ye, Victor N. Zadkov

原始摘要(英文原文)· Original abstract
In higher-order topological insulators (HOTIs), topologically nontrivial phases are usually associated with the shift of Wannier centers to topologically nontrivial positions on the edges of the unit cells, and the emergence of fractional spectral charges in the corners of the lattice upon its truncation that keeps the number of its unit cells integer. Here we propose theoretically and illustrate experimentally a different approach to the construction of HOTIs. This approach utilizes lattices with incomplete unit cells and achieves localized modes of topological origin across a broader parameter space. When truncation disrupts translational symmetry by cutting through the interior of multiple unit cells, boundary modes in our system emerge for both trivial and topologically nontrivial positions of the Wannier centers. We link these modes to the appearance of fractional Wannier centers. We also demonstrate that linear boundary states give rise to rich families of stable solitons bifurcating from them in the presence of focusing nonlinearity. Multiple types of thresholdless topological solitons with different internal symmetries are observed in waveguide arrays with triangular configurations featuring incomplete unit cells for any dimerization of waveguide spacings. Our results expand the family of HOTIs and pave the way for the observation of boundary states with different symmetries. Higher order topological insulators (HOTIs) can provide an extension of the bulk-boundary correspondence associated with topological insulators, with more exotic physics behind localization of excitations at their boundaries and corners. Here, the authors propose a method for creating a class of HOTIs with unconventional boundary truncations, where the emergence of localized boundary modes of topological origin is associated with fractional Wannier centers and occurs across much broader parameter space in comparison with usual HOTIs.
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