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通过标准信息论概念实现相同粒子的量子纠缠。

Quantum entanglement of identical particles by standard information-theoretic notions.

作者信息

Lo Franco Rosario, Compagno Giuseppe

机构信息

Dipartimento di Energia, Ingegneria dell'Informazione e Modelli Matematici, Università di Palermo, Viale delle Scienze, Ed. 9, 90128 Palermo, Italy.

Dipartimento di Fisica e Chimica, Università di Palermo, via Archirafi 36, 90123 Palermo, Italy.

出版信息

Sci Rep. 2016 Feb 9;6:20603. doi: 10.1038/srep20603.

Abstract

Quantum entanglement of identical particles is essential in quantum information theory. Yet, its correct determination remains an open issue hindering the general understanding and exploitation of many-particle systems. Operator-based methods have been developed that attempt to overcome the issue. Here we introduce a state-based method which, as second quantization, does not label identical particles and presents conceptual and technical advances compared to the previous ones. It establishes the quantitative role played by arbitrary wave function overlaps, local measurements and particle nature (bosons or fermions) in assessing entanglement by notions commonly used in quantum information theory for distinguishable particles, like partial trace. Our approach furthermore shows that bringing identical particles into the same spatial location functions as an entangling gate, providing fundamental theoretical support to recent experimental observations with ultracold atoms. These results pave the way to set and interpret experiments for utilizing quantum correlations in realistic scenarios where overlap of particles can count, as in Bose-Einstein condensates, quantum dots and biological molecular aggregates.

摘要

相同粒子的量子纠缠在量子信息理论中至关重要。然而,其正确判定仍是一个悬而未决的问题,阻碍了对多粒子系统的全面理解和利用。已开发出基于算符的方法来试图解决该问题。在此,我们引入一种基于态的方法,作为二次量子化,它不对相同粒子进行标记,并且与先前的方法相比在概念和技术上有进展。它通过量子信息理论中用于可区分粒子的常用概念(如偏迹),确定了任意波函数重叠、局域测量和粒子性质(玻色子或费米子)在评估纠缠中所起的定量作用。我们的方法还表明,将相同粒子置于同一空间位置起到了纠缠门的作用,为最近关于超冷原子的实验观测提供了基本理论支持。这些结果为在实际场景中利用量子关联设置和解释实验铺平了道路,在这些场景中粒子重叠可能起作用,如在玻色 - 爱因斯坦凝聚体、量子点和生物分子聚集体中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c0b/4746635/e84b46ab55e0/srep20603-f1.jpg

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