多配偶制中一夫一妻制和一夫多妻制的互补特性

IF 1.5 4区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY Chinese Physics B Pub Date : 2023-12-20 DOI:10.1088/1674-1056/ad1748
Tao Li, Jing Zhou, Qi Sun, Zhi-Xiang Jin, Deng-Feng Liang, Ting Luo
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引用次数: 0

摘要

单伽关系和多伽关系是量子纠缠的基本性质,它们表征了多方系统中纠缠的分布。本文基于统一-$(q,s)$纠缠建立了量子纠缠的$gamma$th $(0\leq\gamma\leq\alpha, \alpha\geq 1)$幂的一般一偶关系和$delta$th $(\delta\geq\beta、0\leq\beta\leq1)$功率的辅助纠缠,这在$\gamma$和$\delta$的不同参数区域方面为之前的研究提供了补充。然后将这些结果应用于特定的量子相关性,如形成的纠缠、Renyi-$q$ 辅助的纠缠和 Tsallis-$q$ 辅助的纠缠,从而得到相应的一夫一妻制和一妻多夫制不等式。此外,还列举了一些典型的例子加以说明。
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Complementary monogamy and polygamy properties among multipartite systems
Monogamy and polygamy relations are essential properties of quantum entanglement, which characterize the distributions of entanglement in multipartite systems. In this paper, we establish the general monogamy relations for $\gamma$th $(0\leq\gamma \leq\alpha, \alpha\geq 1)$ power of quantum entanglement based on unified-$(q,s)$ entanglement and polygamy relations for $\delta$th $(\delta\geq \beta, 0\leq\beta\leq1)$ power of entanglement of assistance based on unified-$(q,s)$ entanglement of assistance, which provides a complement to the previous research in terms of different parameter regions of $\gamma$ and $\delta$. These results are then applied to specific quantum correlations, e.g. entanglement of formation, Renyi-$q$ entanglement of assistance and Tsallis-$q$ entanglement of assistance to get the corresponding monogamy and polygamy inequalities. Moreover, typical examples are presented for illustration.
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来源期刊
Chinese Physics B
Chinese Physics B 物理-物理:综合
CiteScore
2.80
自引率
23.50%
发文量
15667
审稿时长
2.4 months
期刊介绍: Chinese Physics B is an international journal covering the latest developments and achievements in all branches of physics worldwide (with the exception of nuclear physics and physics of elementary particles and fields, which is covered by Chinese Physics C). It publishes original research papers and rapid communications reflecting creative and innovative achievements across the field of physics, as well as review articles covering important accomplishments in the frontiers of physics. Subject coverage includes: Condensed matter physics and the physics of materials Atomic, molecular and optical physics Statistical, nonlinear and soft matter physics Plasma physics Interdisciplinary physics.
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