Topological temporal boundary states in a non-Hermitian spatial crystal

Fuente: arXiv
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Main Authors: Li, Mingwei, Liu, Jianwei, Wang, Xulong, Chen, Wenjie, Ma, Guancong, Dong, Jianwen
Format: Preprint
Published: 2023
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_version_ 1866916518851248128
author Li, Mingwei
Liu, Jianwei
Wang, Xulong
Chen, Wenjie
Ma, Guancong
Dong, Jianwen
author_facet Li, Mingwei
Liu, Jianwei
Wang, Xulong
Chen, Wenjie
Ma, Guancong
Dong, Jianwen
contents Periodic modulation of the material index in time opens momentum gaps. Such systems are regarded as the temporal analogue of common spatial crystals, wherein the bandgaps open in the frequency space. Recent studies have also led to the theoretical prediction of topological temporal boundary states (TTBSs) in such momentum gaps. In this work, we report the discovery and experimental realization of a new type of TTBS, appearing in a non-Hermitian spatial crystal with spatially periodic loss and gain, wherein the emergence of Bloch momentum gap is associated with a parity-time broken phase, instead of relying on periodic temporal modulation. By inducing a sudden flip of signs of the loss and gain profile, a mode emerges in the middle of the Bloch momentum gap and peaks at the flipping instant, which is regarded as a temporal boundary. Remarkably, we found that the temporal flip induces a topological transition in time, and the said mode is a TTBS that is a temporal analogue of the Jackiw-Rebbi state. The TTBS is experimentally observed in a 1D active mechanical lattice, and it can generically emerge in a wide range of non-Hermitian systems. By linking non-Hermitian physics with spatiotemporal topological systems, our results not only deepen the understanding of temporal topological phases but also open new grounds for controlling transient waves by topological means.
format Preprint
id arxiv_https___arxiv_org_abs_2306_09627
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Topological temporal boundary states in a non-Hermitian spatial crystal
Li, Mingwei
Liu, Jianwei
Wang, Xulong
Chen, Wenjie
Ma, Guancong
Dong, Jianwen
Optics
Periodic modulation of the material index in time opens momentum gaps. Such systems are regarded as the temporal analogue of common spatial crystals, wherein the bandgaps open in the frequency space. Recent studies have also led to the theoretical prediction of topological temporal boundary states (TTBSs) in such momentum gaps. In this work, we report the discovery and experimental realization of a new type of TTBS, appearing in a non-Hermitian spatial crystal with spatially periodic loss and gain, wherein the emergence of Bloch momentum gap is associated with a parity-time broken phase, instead of relying on periodic temporal modulation. By inducing a sudden flip of signs of the loss and gain profile, a mode emerges in the middle of the Bloch momentum gap and peaks at the flipping instant, which is regarded as a temporal boundary. Remarkably, we found that the temporal flip induces a topological transition in time, and the said mode is a TTBS that is a temporal analogue of the Jackiw-Rebbi state. The TTBS is experimentally observed in a 1D active mechanical lattice, and it can generically emerge in a wide range of non-Hermitian systems. By linking non-Hermitian physics with spatiotemporal topological systems, our results not only deepen the understanding of temporal topological phases but also open new grounds for controlling transient waves by topological means.
title Topological temporal boundary states in a non-Hermitian spatial crystal
topic Optics
url https://arxiv.org/abs/2306.09627