Several families of entanglement criteria for multipartite quantum systems based on generalized Wigner-Yanase skew information and variance

Yan Hong, Xinlan Hao, Limin Gao
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Abstract

Quantum entanglement plays a critical role in many quantum applications, but detecting entanglement, especially in multipartite or high-dimensional quantum systems, remains a challenge. In this paper, we propose several families of entanglement criteria for detecting entanglement in multipartite or high-dimensional quantum states using generalized Wigner-Yanase skew information and variance. We also reveal a complementary character between the criteria based on generalized Wigner-Yanase skew information and an alternative one based on variance through specific examples. We illustrate the merits of these criteria and show that the combination of the entanglement criteria has a stronger detection capability, as it is capable of detecting entangled states that remain unrecognized by other criteria.
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基于广义 Wigner-Yanase 偏斜信息和方差的多方量子系统纠缠标准的几个系列
量子纠缠在许多量子应用中起着至关重要的作用,但检测纠缠,尤其是多方或高维量子系统中的纠缠,仍然是一项挑战。在本文中,我们提出了几组纠缠判据,利用广义维格纳-扬那斯偏态和方差来检测多方或高维量子态中的纠缠。我们还通过具体实例揭示了基于广义维格纳-延纳斯偏斜信息的标准与基于方差的标准之间的互补性。我们说明了这些标准的优点,并表明纠缠标准的组合具有更强的检测能力,因为它能够检测出其他标准无法识别的纠缠状态。
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