Spatiotemporal topological phase transitions in photonic spacetime crystals

Fuente: arXiv
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Main Authors: Zhu, Zebin, Huang, Bolun, Xu, Siqi, Chen, Jingming, Meng, Yan, Zhu, Zhenxiao, Xi, Xiang, Gao, Zhen
Format: Preprint
Published: 2025
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author Zhu, Zebin
Huang, Bolun
Xu, Siqi
Chen, Jingming
Meng, Yan
Zhu, Zhenxiao
Xi, Xiang
Gao, Zhen
author_facet Zhu, Zebin
Huang, Bolun
Xu, Siqi
Chen, Jingming
Meng, Yan
Zhu, Zhenxiao
Xi, Xiang
Gao, Zhen
contents Topological phase transitions, characterized by the closing and reopening of band gaps and a concomitant change in topological invariants, have played a central role in topological physics. However, such transitions have so far been restricted to spatial crystals, relying solely on energy band gaps and spatial interfaces. Here, we transcend this conventional framework and report, for the first time, spatiotemporal topological phase transition in photonic spacetime crystals - structures that are periodically modulated in both space and time. Using a dynamically modulated transmission line metamaterial, we theoretically propose and experimentally demonstrate complete spatiotemporal topological phase transitions characterized by the closing and reopening of both energy and momentum band gaps, alongside changes in spatiotemporal topological invariants and topological phases. Furthermore, in a genuine photonic spacetime crystal that possesses a complete energy-momentum band gap, we directly observe a space-time topological event that localizes in both space and time, exhibiting relativistic-causality-governed excitation and robustness against spatiotemporal disorders. Our findings reveal the interplay among space, time, and topology, establishing a unified framework that provides a comprehensive picture of the emerging topological space-time physics and opening new avenues for robust spatiotemporal topological wave manipulations.
format Preprint
id arxiv_https___arxiv_org_abs_2512_16516
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Spatiotemporal topological phase transitions in photonic spacetime crystals
Zhu, Zebin
Huang, Bolun
Xu, Siqi
Chen, Jingming
Meng, Yan
Zhu, Zhenxiao
Xi, Xiang
Gao, Zhen
Optics
Topological phase transitions, characterized by the closing and reopening of band gaps and a concomitant change in topological invariants, have played a central role in topological physics. However, such transitions have so far been restricted to spatial crystals, relying solely on energy band gaps and spatial interfaces. Here, we transcend this conventional framework and report, for the first time, spatiotemporal topological phase transition in photonic spacetime crystals - structures that are periodically modulated in both space and time. Using a dynamically modulated transmission line metamaterial, we theoretically propose and experimentally demonstrate complete spatiotemporal topological phase transitions characterized by the closing and reopening of both energy and momentum band gaps, alongside changes in spatiotemporal topological invariants and topological phases. Furthermore, in a genuine photonic spacetime crystal that possesses a complete energy-momentum band gap, we directly observe a space-time topological event that localizes in both space and time, exhibiting relativistic-causality-governed excitation and robustness against spatiotemporal disorders. Our findings reveal the interplay among space, time, and topology, establishing a unified framework that provides a comprehensive picture of the emerging topological space-time physics and opening new avenues for robust spatiotemporal topological wave manipulations.
title Spatiotemporal topological phase transitions in photonic spacetime crystals
topic Optics
url https://arxiv.org/abs/2512.16516