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首页> 外文期刊>Journal of Modern Optics >Population trapping in the Jaynes-Cummings model with a Kerr nonlinearity in the cavity
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Population trapping in the Jaynes-Cummings model with a Kerr nonlinearity in the cavity

机译:腔内具有Kerr非线性的Jaynes-Cummings模型中的种群陷阱

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An electromagnetic field state is found which maintains the population inversion of the atom stationary during the interaction with the field through a Jaynes-Cummings model (JCM) with a Kerr type nonlinearity in the cavity. The condition of stationarity of the population inversion includes the phase coupling of atomic dipole with the field. We have shown that the Kerr nonlinearity in the cavity field significantly modifies the photon statistics of the trapped field state through an intensity dependent detuning in the field compared to the normal JCM trapping state. We have also demonstrated the novel features of sub-Poissonian character and the squeezing of the trapped field state. The dynamics of the initial trapped field is studied in terms of squeezing and the Q-function.
机译:通过腔内具有Kerr型非线性的Jaynes-Cummings模型(JCM),发现了一种电磁场状态,该状态在与场相互作用时保持原子的总体反转稳定。总体反转平稳的条件包括原子偶极子与场的相位耦合。我们已经表明,与普通JCM俘获状态相比,腔场中的Kerr非线性通过场中依赖于强度的失谐极大地修改了俘获场状态的光子统计。我们还展示了亚泊松性质的新特征以及对陷获场态的压缩。根据压缩和Q函数研究了初始陷阱场的动力学。

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