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Quasi-probability distributions and decoherence of Hermite-excited squeezed thermal states

机译:埃尔米特激发的压缩热态的拟概率分布和退相干

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摘要

We theoretically put forward the Hermite-excited squeezed thermal states (HESTS) by applying operator Hermite polynomials on squeezed thermal states. Starting from the normally ordered density operator of squeezed thermal states and operator Hermite polynomials, the normalization factor is obtained, which is related to the Legendre polynomials. Several phase-space distribution functions, i.e., the Q function, P function, Wigner function (WF), and R function, are analytically derived. And the non-Gaussianity and nonclassicality are mainly reflected by the negativity of non-Gaussian WF and the existence of nonclassical depth. In addition, by deriving the normally ordered density operator and WF of HESTS in the laser channel, the decoherence effect is studied and discussed. Finally, the quantity in measuring non-Gaussianity is calculated to further quantitatively measure the non-Gaussianity of the resulting states.
机译:我们通过在压缩热态上应用算子Hermite多项式,从理论上提出了Hermite激发的压缩热态(HESTS)。从压缩热态的通常有序密度算子和Hermite多项式算子开始,获得归一化因子,该因子与Legendre多项式有关。解析地导出了几个相空间分布函数,即Q函数,P函数,Wigner函数(WF)和R函数。非高斯性和非经典性主要由非高斯WF的负性和非经典深度的存在来反映。此外,通过推导激光通道中HESTS的常序密度算符和WF,研究并讨论了退相干效应。最后,计算用于测量非高斯性的量,以进一步定量地测量所得状态的非高斯性。

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