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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Semiclassical Wigner distribution for a two-mode entangled state generated byan optical parametric oscillator
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Semiclassical Wigner distribution for a two-mode entangled state generated byan optical parametric oscillator

机译:由光学参量振荡器产生的二模纠缠态的半经典Wigner分布

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We derive the steady-state solution of the Fokker-Planck equation that describes the dynamics of the nondegenerate optical parametric oscillator in the truncated Wigner representation of the density operator. We assume that the pump mode is strongly damped, which permits its adiabatic elimination. When the elimination is correctly executed, the resulting stochastic equations contain multiplicative noise terms and do not admit a potential solution. However, we develop a heuristic scheme leading to a satisfactory steady-state solution. This provides a clear view of the intracavity two-mode entangled state valid in all operating regimes of the optical parametric oscillator. A non-Gaussian distribution is obtained for the above threshold solution
机译:我们导出了Fokker-Planck方程的稳态解,该方程在密度算子的截断的Wigner表示中描述了非简并光学参量振荡器的动力学。我们假设泵的模式是强阻尼的,这允许其绝热消除。正确执行消除后,所得的随机方程将包含乘法噪声项,并且不存在潜在的解决方案。但是,我们开发了一种启发式方案,可提供令人满意的稳态解决方案。这清楚地显示了在光参量振荡器的所有工作状态下有效的腔内双模纠缠状态。对于上述阈值解获得了非高斯分布

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