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首页> 外文期刊>Journal of information science and engineering >Photon Statistics, Tomographic Entropy of a Single Qubit-Radiation Field in the Even Binomial Distribution
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Photon Statistics, Tomographic Entropy of a Single Qubit-Radiation Field in the Even Binomial Distribution

机译:光子统计,单个戒烟场的断层熵均匀二项分布

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In this article we present a scheme of the interaction between a single qubit (SQ) and radiation field (RF) follows the even "binomial distribution" (BD). The density matrix of the SQ-RF system is given in terms of the number of photon transition and RF distribution parameters. The photon statistics and topographical properties of the RF are quantified by the evolution of Mandel parameter and tomographic entropy respectively. We explore the relation between the tomographic entropy and Wehrl entropy of the RF of the estimators of model parameters in the even BD. The results show that the SQ-RF correlation is connected by the tomographical and statistical properties of the proposed system.
机译:在本文中,我们介绍了单个Qubit(SQ)和辐射场(RF)之间的相互作用的方案遵循均匀的“二项式分布”(BD)。根据光子转换和RF分布参数的数量给出了SQ-RF系统的密度矩阵。 RF的光子统计和地形特性分别通过施琴参数和断层熵的演变来量化。我们在偶数BD中探讨了模型参数估算率的断层熵和Wehrl熵之间的关系。结果表明,SQ-RF相关性通过所提出的系统的缺陷和统计特性连接。

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