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Certifying separability and entanglement classes of not-completely-permutation-symmetric qudit states

机译:不完全偏置对称QUDIT状态的认证可分离和纠缠类

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We analyze the entanglement properties for the not-completely-permutation-symmetric states of quantum systems composed of two subsystems with an equal but arbitrary finite local Hilbert space dimension. We investigate both pure and mixed states with such a symmetry obtained by relaxing the symmetry requirement of the axisymmetric states. For such states we discuss the entanglement classification with respect to stochastic local operations and classical communication and establish the entanglement quantitatively by means of concurrence and negativity. In particular, we determine the separability criterion in the frame of various methods, including the k-positive map witness, optimal Schmidt-number witnesses, and entanglement measures.
机译:我们分析了由两个子系统组成的Quantum系统的不完全置换对称状态的纠缠属性,其具有相等但任意的有限的本地希尔伯特空间尺寸。 我们通过放松轴对称状态的对称性要求,研究了这种对称性的纯和混合状态。 对于这样的状态,我们讨论了关于随机本地操作和经典通信的纠缠分类,并通过并发和消极性定量地确定缠结。 特别地,我们确定各种方法的帧中的可分离标准,包括K正面图证明,最佳施密特数见证和纠缠措施。

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