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Characterizing Quantum Correlations in Arbitrary-Dimensional Bipartite Systems Using Hurwitz's Theory

Characterizing Quantum Correlations in Arbitrary-Dimensional Bipartite Systems Using Hurwitz's Theory
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摘要 Quantum correlations play vital roles in the quantum features in quantum information processing tasks. Among the measures of quantum correlations, quantum discord (QD) and entanglement of formation (EOF) axe two significant ones. Recent research has shown that there exists a relation between QD and EOF, which makes QD more significant in quantum information theory. However, until now, there exists no general method of chaxaeterizing quantum discord in high-dimensional quantum systems. In this paper, we have proposed a general method for calculating quantum discord in axbitraxy-dimensionM bipaxtite quantum systems in terms of Hurwitz's theory. Applications including the Werner state, the spin-1 XXZ model thermal equilibrium state, the Horodecki state, and the separable-bound-free entanglement state are investigated. We present the method of obtaining the EOF of axbitraxy-dimensional bipaxtite quantum states via purification, and the relations.hip between QD and EOF.
作者 LI Hui
出处 《Communications in Theoretical Physics》 SCIE CAS CSCD 2014年第3期273-280,共8页 理论物理通讯(英文版)
基金 Supported by the National Natural Science Foundation of China under Grant Nos. 10874098 and 11175094 and the National Basic Research Program of China under Grant Nos. 2009CB929402 and 2011CB9216002, GLL is a Member of Center of Atomic and Molecular Nanosciences, Tsinghua University
关键词 quantum correlation quantum discord entanglement of formation 高维量子系统 量子关联 赫维茨 表征 量子信息处理 量子信息理论 平衡状态 量子相关性
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