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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Thermal quantum and classical correlations in a two-qutrit system
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Thermal quantum and classical correlations in a two-qutrit system

机译:二重态系统中的热量子和经典相关

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摘要

The investigation of quantum and classical correlations has mostly concentrated on two-qubit states because the minimization in the classical correlation is quite complicated for high-dimensional states. Thermal quantum and classical correlations are studied for a two-qutrit system with various coupling constants, external magnetic fields, and temperatures as well, where the quantum correlation is described in terms of the quantum discord that has been extensively used in recent literature. The entanglement negativity is calculated for comparison. It is shown that the discord is nonzero whereas the negativity is zero in some ranges of system parameters and temperature. Moreover, the discord is more robust than the entanglement against temperature and magnetic field. However, at lower temperatures all three correlations behave similarly. Those are useful for understanding quantum correlations in high-dimensional mixed states and quantum information processing.
机译:量子相关和经典相关的研究主要集中在两个量子位的状态上,因为对于高维状态,经典相关的最小化非常复杂。对于具有各种耦合常数,外部磁场和温度的二重态系统,还研究了热量子和经典相关性,其中,量子相关性是根据最近文献中广泛使用的量子不和描述的。计算缠结负性以进行比较。结果表明,在系统参数和温度的某些范围内,失调不为零,而负数为零。此外,不和谐比对温度和磁场的纠缠更为牢固。然而,在较低温度下,所有三个相关性表现相似。这些对于理解高维混合态中的量子相关性和量子信息处理很有用。

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