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Decoherence and Fidelity in Teleportation of Coherent Photon-Added Two-Mode Squeezed Thermal States

机译:传送相干光子添加的双模挤压热态的阻断和保真度

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摘要

We theoretically introduce a kind of non-Gaussian entangled resources, i.e., coherent photon-added two-mode squeezed thermal states (CPA-TMSTS), by successively performing coherent photon addition operation to the two-mode squeezed thermal states. The normalization factor related to bivariate Hermite polynomials is obtained. Based upon it, the nonclassicality and decoherence process are analyzed by virtue of the Wigner function. It is shown that the coherent photon addition operation is an effective way in generating partial negative values of Wigner function, which clearly manifests the nonclassicality and non-Gaussianity of the target states. Additionally, the fidelity in teleporting coherent states using CPA-TMSTS as entangled resource is quantified both analytically and numerically. It is found that the CPA-TMSTS is an entangled resource of high-efficiency and high-fidelity in quantum teleportation.
机译:我们理论地引入了一种非高斯纠缠的资源,即,通过连续地对两模挤压的热状态执行相干的光子加法操作,相干的光子添加的双模挤压热状态(CPA-TMSTS)。 获得与双核苷酸海绵多项式有关的归一化因子。 基于它,通过Wigner函数分析非核实性和脱机过程。 结果表明,相干的光子加成操作是生成Wigner函数的部分负值的有效方法,这显然表现出目标状态的非分化性和非高斯度。 此外,使用CPA-TMST作为纠缠资源的传送相干状态的保真度在分析和数值上量化。 结果发现,CPA-TMST是量子传送中的高效率和高保真的纠缠资源。

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