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Phase-space distribution functions for photon propagation in waveguides coupled to a qubit

机译:相空间分布函数用于光子在与量子位耦合的波导中的传播

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We investigate propagation of few-photon pulses in waveguides coupled to a two-level system by means of the method of distribution functions in coordinate-momentum space that provides a detailed description of photon systems. We find that the distribution function of the transmitted pulse can be negative for the nonclassical input (i.e., single-photon Fock state). This reveals the quasiprobability nature of photon distribution. Analytical expressions for photon densities in the momentum space as well as in the coordinate space are obtained for the mentioned single-photon Gaussian input. We also study the evolution of the multimode coherent-state input for an arbitrary photon number. Time-dependent differential equations describing average densities and fluctuations of outgoing photons are derived and solved. The influence of the number of input photons, pulse width, and radiation-atom interaction strength on the statistical properties of the fluctuations is investigated.
机译:我们通过坐标动量空间中分布函数的方法研究耦合到两级系统的波导中几个光子脉冲的传播,该函数提供了光子系统的详细描述。我们发现,对于非经典输入(即单光子Fock状态),传输脉冲的分布函数可能为负。这揭示了光子分布的拟准性。对于所述单光子高斯输入,获得了动量空间以及坐标空间中光子密度的解析表达式。我们还研究了任意光子数的多模相干态输入的演化。推导并求解了描述输出光子的平均密度和波动的随时间变化的微分方程。研究了输入光子数量,脉冲宽度和辐射-原子相互作用强度对波动统计特性的影响。

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