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- W3048328489 abstract "The generated magnitude of quadrature squeezing in a cavity-coupled ensemble, which is continuously driven using a coherent off-axis field, is theoretically explored. Using a truncated set of equations-of-motion derived from a Dicke Hamiltonian, steady-state quadrature squeezing of the cavity field is numerically calculated to approach a limit of -3 dB, while frequency-modulated quadrature squeezing approaches a limit of -14 dB, in the absence of pure-dephasing, and as a function of the ensemble's size and detuning. The impact of pure-dephasing on steady-state quadrature squeezing is shown to be mitigated by increased detuning of the driving field, while frequency-modulated squeezing is only shielded in a regime where the cumulative coupling and driving rates are in excess of the pure-dephasing rate. Spin-squeezed entanglement is also calculated to occur simultaneously with weakly-driven frequency-modulated quadrature squeezing." @default.
- W3048328489 created "2020-08-13" @default.
- W3048328489 creator A5037173140 @default.
- W3048328489 date "2021-02-02" @default.
- W3048328489 modified "2023-09-23" @default.
- W3048328489 title "Driven quadrature and spin squeezing in a cavity-coupled ensemble of two-level states" @default.
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- W3048328489 doi "https://doi.org/10.1103/physreva.103.023701" @default.
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