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- W3136392648 abstract "We systematically investigate the nonlinearity of librational and translational modes, and present a theoretical scheme for quantum ground state cooling of both librational and translational modes of an optically levitated nonspherical nanoparticle via cavity mode. By expanding the trapping potential to the fourth order of both the translational and librational freedom degrees, we obtain the inherent nonlinearity of them and their nonlinear coupling. Through stability analysis, bi- and multistability are presented in this system, when either the librational or the translational drive is red-detuning. The system will be stabilized if and only if these two drives are both blue-detuning. In order to obtain the quantum ground states of the motional modes of ellipsoidal nanoparticle, a cavity mode is utilized to cool the librational and translational modes. By optimizing the frequencies and amplitudes of drives and residual air pressure, the quantum ground states of the librational and translational modes can be realized at the same time." @default.
- W3136392648 created "2021-03-29" @default.
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- W3136392648 date "2021-04-09" @default.
- W3136392648 modified "2023-10-16" @default.
- W3136392648 title "Quantum ground state cooling of translational and librational modes of an optically trapped nanoparticle coupling cavity" @default.
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- W3136392648 doi "https://doi.org/10.1002/que2.62" @default.
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