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Nonequilibrium topological spin textures in momentum space.


ABSTRACT: SignificanceOptically excited systems can host unprecedented phenomena and reveal key information. The spin-channel physics in the photoexcited dynamics of quantum matter remains largely unexplored. This study finds the topological surface state under contemporary time-resolved pump-probe spectroscopy an exceptionally capable platform in this regard. Spin signals exhibit interesting tornado-like spiral patterns, and the unusual topological optical activity can be indicative of spintronic applications. This exemplifies a purely nonequilibrium topological winding phenomenon, where all the hidden helicity factors in the light-matter-coupled system are robustly encoded. These results open a direction of nonequilibrium topological spin states in quantum materials.

SUBMITTER: Zhang XX 

PROVIDER: S-EPMC8944773 | biostudies-literature | 2022 Mar

REPOSITORIES: biostudies-literature

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Nonequilibrium topological spin textures in momentum space.

Zhang Xiao-Xiao XX   Nagaosa Naoto N  

Proceedings of the National Academy of Sciences of the United States of America 20220318 12


SignificanceOptically excited systems can host unprecedented phenomena and reveal key information. The spin-channel physics in the photoexcited dynamics of quantum matter remains largely unexplored. This study finds the topological surface state under contemporary time-resolved pump-probe spectroscopy an exceptionally capable platform in this regard. Spin signals exhibit interesting tornado-like spiral patterns, and the unusual topological optical activity can be indicative of spintronic applica  ...[more]

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