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Two-way and three-way negativities of three-qubit entangled states

机译:三量子位纠缠态的两向和三向负性

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We propose to quantify three-qubit entanglement using global negativity along with K-way negativities, where K=2 and 3. The principle underlying the definition of K-way negativity for pure and mixed states of N subsystems is a positive partial transpose sufficient condition. However, K-way partial transpose with respect to a subsystem is defined so as to shift the focus to K-way coherences instead of K subsystems of the composite system. A quantum state of a three-qubit system is characterized by the coherences measured by global, two-way, and three-way negativities. For a canonical state of three-qubit system, entanglement measures for genuine tripartite entanglement, W-like entanglement, and bipartite entanglement can be related to two-way and three-way negativities.
机译:我们建议使用全局负性和K负性(其中K = 2和3)来量化三量子位纠缠。N个子系统的纯态和混合态K负性定义的基本原理是一个正的局部转置充分条件。但是,定义了相对于子系统的K向局部转置,以便将焦点转移到K向相干而不是复合系统的K个子系统。三量子位系统的量子态的特征在于,其相干性是通过整体,双向和三向负性测得的。对于三量子位系统的规范状态,真正的三方纠缠,类W纠缠和二分纠缠的纠缠措施可能与两向和三向负相关。

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