Multi-topological phases of matter

Fuente: arXiv
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Main Authors: Wang, Ziteng, Bongiovanni, Domenico, Wang, Xiangdong, Hu, Zhichan, Jukić, Dario, Song, Daohong, Xu, Jingjun, Morandotti, Roberto, Chen, Zhigang, Buljan, Hrvoje
Format: Preprint
Published: 2024
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author Wang, Ziteng
Bongiovanni, Domenico
Wang, Xiangdong
Hu, Zhichan
Jukić, Dario
Song, Daohong
Xu, Jingjun
Morandotti, Roberto
Chen, Zhigang
Buljan, Hrvoje
author_facet Wang, Ziteng
Bongiovanni, Domenico
Wang, Xiangdong
Hu, Zhichan
Jukić, Dario
Song, Daohong
Xu, Jingjun
Morandotti, Roberto
Chen, Zhigang
Buljan, Hrvoje
contents The discovery of topological phases of matter and topological boundary states had tremendous impact on condensed matter physics and photonics, where topological phases are defined via energy bands, giving rise to topological band theory. However, topological systems that cannot be described by band topology but still support non-trivial boundary states are little-known and largely unexplored. Here, we uncover a new kind of topological phase of matter named "multi-topological phase" (MTP) that features multiple sets of boundary states, where each set is associated with one distinct topological invariant. Unlike conventional topological phase transitions, the MTP transitions can occur without band-gap closing. We present typical examples of MTPs in a one-dimensional topological insulator and a two-dimensional higher-order topological insulator, where the systems are otherwise trivial according to band topology. Furthermore, MTPs can exist also in indirectly gapped Chern insulators, beyond the regime where the conventional bulk-boundary correspondence predicts the existence of boundary states. Experimentally, we demonstrate the first two examples of MTPs in laser-written photonic lattices. Our findings constitute a fundamental advance in topological physics and provide a route for designing novel topological materials.
format Preprint
id arxiv_https___arxiv_org_abs_2411_11121
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Multi-topological phases of matter
Wang, Ziteng
Bongiovanni, Domenico
Wang, Xiangdong
Hu, Zhichan
Jukić, Dario
Song, Daohong
Xu, Jingjun
Morandotti, Roberto
Chen, Zhigang
Buljan, Hrvoje
Optics
Materials Science
The discovery of topological phases of matter and topological boundary states had tremendous impact on condensed matter physics and photonics, where topological phases are defined via energy bands, giving rise to topological band theory. However, topological systems that cannot be described by band topology but still support non-trivial boundary states are little-known and largely unexplored. Here, we uncover a new kind of topological phase of matter named "multi-topological phase" (MTP) that features multiple sets of boundary states, where each set is associated with one distinct topological invariant. Unlike conventional topological phase transitions, the MTP transitions can occur without band-gap closing. We present typical examples of MTPs in a one-dimensional topological insulator and a two-dimensional higher-order topological insulator, where the systems are otherwise trivial according to band topology. Furthermore, MTPs can exist also in indirectly gapped Chern insulators, beyond the regime where the conventional bulk-boundary correspondence predicts the existence of boundary states. Experimentally, we demonstrate the first two examples of MTPs in laser-written photonic lattices. Our findings constitute a fundamental advance in topological physics and provide a route for designing novel topological materials.
title Multi-topological phases of matter
topic Optics
Materials Science
url https://arxiv.org/abs/2411.11121