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Nonclassical thermal-state superpositions: Analytical evolution law and decoherence behavior

机译:非混播热状态叠加:分析演化法和脱扑行为

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摘要

AbstractEmploying the integration technique within normal products of bosonic operators, we present normal product representations of thermal-state superpositions and investigate their nonclassical features, such as quadrature squeezing, sub-Poissonian distribution, and partial negativity of the Wigner function. We also analytically and numerically investigate their evolution law and decoherence characteristics in an amplitude-decay model via the variations of the probability distributions and the negative volumes of Wigner functions in phase space. The results indicate that the evolution formulas of two thermal component states for amplitude decay can be viewed as the same integral form as a displaced thermal stateρ(V,d), but governed by the combined action of photon loss and thermal noise. In addition, the larger values of the displacementdand noiseVlead to faster decoherence for thermal-state superpositions.]]>
机译:<![cdata [ Abstract 在鲍苏型运营商的正常产品中采用集成技术,我们呈现热状态叠加的正常产品表示,并调查它们的非化学特征,如正交挤压,亚泊松分布,Wigner函数的局部否定性。我们还通过概率分布的变化和相位空间中的Wigner函数的变化来分析和数值上对幅度衰减模型中的演化法和变形特性进行了数字化。结果表明,幅度衰减的两个热分量状态的演化公式可以被视为与位移的热状态 ρ (< / mml:mo> v d ,但是通过光子损耗和热噪声的组合动作来治理。此外,位移的较大值 d 和噪声 V 导致对热 - 快退相干状态叠加。 ]]>

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