Witnessing pairing correlations in identical-particle systems

C. Aksak, S. Turgut
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引用次数: 0

Abstract

Quantum correlations and entanglement in identical-particle systems have been a puzzling question which has attracted vast interest and widely different approaches. Witness formalism developed first for entanglement measurement can be adopted to other kind of correlations. An approach is introduced by Kraus \emph{et al.}, [Phys. Rev. A \textbf{79}, 012306 (2009)] based on pairing correlations in fermionic systems and the use of witness formalism to detect pairing. In this contribution, a two-particle-annihilation operator is used for constructing a two-particle observable as a candidate witness for pairing correlations of both fermionic and bosonic systems. The corresponding separability bounds are also obtained. Two different types of separability definition are introduced for bosonic systems and the separability bounds associated with each type are discussed.
见证同粒子系统中的配对关联
同粒子系统中的量子相关和纠缠一直是一个令人困惑的问题,引起了广泛的兴趣和广泛不同的研究方法。首先为纠缠测量而发展起来的见证形式可以应用于其他类型的相关。一种方法是由Kraus\emph{等人}提出的。基于费米\textbf{子系统}中配对相关性和使用见证形式检测配对的方法[j] .光子学报,2009,31(6):1107 - 1107。在这篇贡献中,一个双粒子湮灭算子被用来构造一个双粒子可观测值,作为费米子和玻色子系统配对相关的候选见证。得到了相应的可分性界。介绍了两种不同类型的玻色子系统的可分性定义,并讨论了每种类型的可分性界。
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