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首页> 外文期刊>Physical Review, A >Maximally steerable mixed state based on the linear steering inequality and the Clauser-Horne-Shimony-Holt-like steering inequality
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Maximally steerable mixed state based on the linear steering inequality and the Clauser-Horne-Shimony-Holt-like steering inequality

机译:基于线性转向不等式和克劳瑟 - Horne-Shimony-Holt样转向不等式的最大可转向混合状态

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摘要

The two-qubit maximally steerable mixed state (MSMS), defined as one that violates to the most degree a steering inequality for any fixed linear entropy, is derived mathematically here based on the two-setting (threesetting) linear steering inequality and the two-setting Clauser-Horne-Shimony-Holt-like steering inequality. Interestingly, the form of the MSMS based on such different steering inequalities obtained here is identical to the two-qubit maximally nonlocal mixed state (MNMS). It is clearly shown that finding any two-qubit state, of which the state mixedness exceeds 2/3, thus violating the three-setting steering inequalities, is impossible. The violation of the inequalities with theWerner state and with the maximally entangled mixed state, respectively, as well as the relations between their optimal violation and the linear entropy, is also discussed comprehensively. In particular, within the range ε(ρ) ∈ [0,2/3] of the fixed linear entropy, theWerner state reaches the same violation as the MSMS does of the three-setting linear steering inequality, but not of the two-setting steering inequalities (for the latter inequalities the violation with the Werner state is generally less than that with the MSMS). For the MEMS, the optimal violation is always lower than that of the MSMS for any fixed linear entropy.
机译:定义为违反任何固定线性熵的最大程度的转向不等式的两个Qubit最大可转向的混合状态(MSM)是基于两种设置(三分行)线性转向不等式和两个 - 设置克劳瑟·霍恩 - 龙眼 - 霍尔特的转向不等式。有趣的是,基于此处获得的这种不同转向不等式的MSM的形式与双量标最大的非局部混合状态(MNMS)相同。清楚地表明,找到任何两个量子位状态,其中状态混合超过2/3,因此违反了三个定导的转向不等式,是不可能的。还讨论了违反了威力的不平等以及具有最大纠缠的混合状态,以及其最佳违规与线性熵之间的关系,也是全面的探讨。特别地,在固定线性熵的范围ε(ρ)∈[0,2 / 3]内,Werner状态达到相同的违规,因为MSMS具有三个设置线性转向不等式,但不具有两个设置转向不平等(对于后者不平等,违反Werner状态的违规通常小于MSM)。对于MEMS,最佳违规总是低于任何固定线性熵的MSM的违规行为。

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