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Entropy Squeezing in Coupled Field-Superconducting Charge Qubit with Intrinsic Decoherence

机译:具有内在退相干的耦合场超导电荷量子位的熵压缩

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摘要

We investigate the entropy squeezing in the system of a superconducting charge qubit coupled to a single mode field. We find an exact solution of the Milburn equation for the system and discuss the influence of intrinsic decoherence on entropy squeezing. As a comparison, we also consider the variance squeezing. Our results show that in the absence of the intrinsic decoherence both entropy and variance squeezings have the same periodic properties of time,and occur at the same range of time. However, when the intrinsic decoherence is considered, we find that as the time going on the entropy squeezing disappears fast than the variance squeezing, there exists a range of time where entropy squeezing can occur but variance squeezing cannot.
机译:我们研究耦合到单模场的超导电荷量子比特系统中的熵压缩。我们找到了系统的Milburn方程的精确解,并讨论了内在退相干对熵压缩的影响。作为比较,我们还考虑方差压缩。我们的结果表明,在没有内在退相干的情况下,熵和方差压缩都具有相同的时间周期性,并且在相同的时间范围内发生。但是,当考虑内在退相干时,我们发现随着熵压缩的持续时间比方差压缩快消失,存在一定时间范围内的熵压缩可能发生,而方差压缩却不能。

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