English

Realization of Surface-Obstructed Topological Insulators

Other Condensed Matter 2022-06-15 v2 Materials Science Applied Physics Classical Physics

Abstract

Recently, higher-order topological insulators have been attracting extensive interest. Unlike the conventional topological insulators that demand bulk gap closings at transition points, the higher-order band topology can be changed without bulk closure and exhibits as an obstruction of higher-dimensional boundary states. Here, we report the first experimental realization of three-dimensional surface-obstructed topological insulators with using acoustic crystals. Our acoustic measurements demonstrate unambiguously the emergence of one-dimensional topological hinge states in the middle of the bulk and surface band gaps, as a direct manifestation of the higher-order band topology. Together with comparative measurements for the trivial and phase-transition-point insulators, our experimental data conclusively evidence the unique bulk-boundary physics for the surface-obstructed band topology. That is, the topological phase transition is determined by the closure of surface gap, rather than by closing the bulk gap. Our study might spur on new activities to deepen the understanding of such elusive topological phases.

Keywords

Cite

@article{arxiv.2112.01775,
  title  = {Realization of Surface-Obstructed Topological Insulators},
  author = {Juan Du and Tianzi Li and Xiying Fan and Qicheng Zhang and Chunyin Qiu},
  journal= {arXiv preprint arXiv:2112.01775},
  year   = {2022}
}

Comments

Phys.Rev.Lett. Accepted

R2 v1 2026-06-24T08:02:51.268Z