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- W3043075863 abstract "Floquet engineering - designing band structures on-demand through the application of coherent time-periodic drives - has recently emerged as a powerful tool for creating new topological and anomalous phases of matter. In this manuscript, we show that the same principle can be applied to create non-equilibrium correlated states with spontaneously broken symmetry in a lightly doped semiconductor. The periodic drive provides means for obtaining large electronic densities of states necessary for the broken symmetry phase. The phase transition occurs in the steady-state of the system achieved due to interplay between the coherent external drive, electron-electron interactions, and dissipative processes arising from the coupling to phonons and the electromagnetic environment. We obtain the phase diagram of the system using numerical calculations that match predictions obtained from a phenomenological treatment and discuss the conditions on the system and the external drive under which spontaneous symmetry breaking occurs. Our results imply that Floquet engineering of the density of states provides a new route for generating and controlling correlated states of electrons with external fields." @default.
- W3043075863 created "2020-07-23" @default.
- W3043075863 creator A5051068811 @default.
- W3043075863 creator A5055792056 @default.
- W3043075863 creator A5080237536 @default.
- W3043075863 creator A5088795401 @default.
- W3043075863 creator A5089744636 @default.
- W3043075863 date "2021-09-06" @default.
- W3043075863 modified "2023-10-18" @default.
- W3043075863 title "Electronic Floquet gyro-liquid crystal" @default.
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- W3043075863 doi "https://doi.org/10.1038/s41467-021-25511-9" @default.
- W3043075863 hasPublicationYear "2021" @default.