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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Intrinsic degree of coherence of two-qubit states and measures of two-particle quantum correlations
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Intrinsic degree of coherence of two-qubit states and measures of two-particle quantum correlations

机译:双量标状态的内在长度和双粒子量子相关的测量

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Recently, a basis-invariant measure of coherence known as the intrinsic degree of coherence has been established for classical and single-particle quantum states Opt. Soc. Am. B 36, 2765 (2019)]. In this article, we use the same mathematical construction to define the intrinsic degree of coherence of two-qubit states and demonstrate its usefulness in quantifying two-particle quantum correlations and entanglement. In this context, we first show that the intrinsic degree of coherence of a two-qubit state puts an upper bound on the violations of Bell inequalities that can be achieved with the state and that a two-qubit state with an intrinsic degree of coherence less than 1/root 3 cannot violate Bell inequalities. We then show that the quantum discord of a two-qubit state, which quantifies the amount of quantum correlations available in the two-qubit state for certain tasks, is bounded from above by the intrinsic degree of coherence of the state. Next, in the context of two-particle entanglement, we show that the range of values that the concurrence of a two-qubit state can take is decided by the intrinsic degree of coherence of the two-qubit state together with that of the individual qubits. Finally, for the polarization two-qubit states generated by the parametric down-conversion of a pump photon, we propose an experimental scheme to measure the intrinsic degree of coherence of two-qubit states. We also present our theoretical study that shows how the intrinsic degree of coherence of a pump photon dictates the maximum intrinsic degree of coherence of the generated two-qubit state. (C) 2020 Optical Society of America
机译:最近,已经建立了古典和单粒子量子级选择所谓的称为本质相干程度的基本不变度量。 SOC。是。 B 36,2765(2019)]。在本文中,我们使用相同的数学结构来定义双量标状态的内在长度,并证明其在量化双粒子量子相关性和缠结方面的有用性。在这方面,我们首先表明,双时差国家的内在一致性程度对禁区的响挑行为,可以通过国家和多种相干程度实现的两个量子位状态下降比1 /根3不能违反钟声不等式。然后,我们表明,两种量子位状态的量子不同构地定量了某些任务的两个量子位状态可用的量子相关量,从上方通过状态的内在界限界定。接下来,在双粒子纠缠的上下文中,我们表明,两个量子位状态可以采取的值的范围是由两个量子位状态与各个Qubits的内在相干程度的共同程度决定。最后,对于由泵光子的参数扫描转换产生的偏振二QUB态,我们提出了一种实验方案来测量双量标状态的内在相干程度。我们还提供了我们的理论研究,示出了泵浦光子的固有程度如何决定产生的双量子位状态的最大相干性的最大程度。 (c)2020美国光学学会

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