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Photon-catalyzed optical coherent states generated via a non-degenerate parametric amplifier with quantum-optical catalysis

机译:通过非退化参数放大器产生的光子催化光学相干状态,具有量子 - 光学催化

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摘要

We theoretically generate a kind of photon-catalyzed optical coherent states (PCOCSs) by heralded interference between any photons and coherent state via a non-degenerate parametric amplifier, which is also just a Laguerre polynomial excited coherent state. Based on obtaining the probability of successfully detecting them (also the normalization factor), the nonclassical properties of the PCOCSs are analytically investigated according to autocorrelation function, quadrature squeezing, and the negativity of the Wigner function. It is found that the nonclassicality depends on the amplitude of the coherent state, the catalysis photon number, and amplifier parameter. The negative volume of their Wigner function can be enlarged by increasing the catalysis photon number. These parameters may be effectively used to improve and enhance the nonclassical characteristics.
机译:理论上,通过非退化参数放大器在任何光子和相干状态之间通过预示的干扰来理解产生一种光子催化的光学相干状态(PCOCS),这也只是Laguerre多项式激发的相干状态。 基于获得成功检测它们的概率(也是归一化因子),根据自相关函数,正交挤压和Wigner函数的消极性分析PCOCS的非生效性质。 发现非分布性取决于相干状态,催化光子数和放大器参数的幅度。 通过增加催化光子数可以扩大它们的Wigner函数的负体积。 这些参数可以有效地用于改善和增强非分化特征。

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