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首页> 外文期刊>Journal of physics, A. Mathematical and theoretical >Spinspin correlations of entangled qubit pairs in the Bohm interpretation of quantum mechanics
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Spinspin correlations of entangled qubit pairs in the Bohm interpretation of quantum mechanics

机译:量子力学的Bohm解释中纠缠量子位对的自旋旋相关

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A general entangled qubit pair is analyzed in the de BroglieBohm formalism corresponding to two spin-1/2 quantum rotors. Several spinspin correlators of Bohms hidden variables are analyzed numerically and a detailed comparison with results obtained by standard quantum mechanics is outlined. In addition to various expectation values, the Bohm interpretation also allows a study of the corresponding probability distributions, which enables a novel understanding of entangled qubit dynamics. In particular, it is shown how the angular momenta of two qubits in this formalism can be viewed geometrically and characterized by their relative angles. For perfectly entangled pairs, for example, a compelling picture is given, where the qubits exhibit a unison precession making a constant angle between their angular momenta. It is also demonstrated that the properties of standard quantum mechanical spin-spin correlators responsible for the violation of Bells inequalities are identical to their counterparts emerging from the probability distributions obtained by the Bohmian approach.
机译:在de BroglieBohm形式主义中,分析了与两个自旋1/2量子转子相对应的一般纠缠量子位对。数值分析了几个Bohms隐藏变量的自旋自旋相关器,并概述了与标准量子力学获得的结果的详细比较。除各种期望值外,Bohm解释还允许研究相应的概率分布,这使人们对纠缠的量子位动力学有了新的认识。特别地,示出了如何从几何学上观察该形式学中的两个量子位的角动量并通过它们的相对角度来表征。例如,对于完美纠缠的对,给出了引人注目的图片,其中的量子位表现出一致的进动,使它们的角动量之间保持恒定的角度。还证明了负责违反Bells不等式的标准量子机械自旋自旋相关器的性质与从通过Bohmian方法获得的概率分布中出现的对应物相同。

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