凝聚态的见证纠缠和量子相关:综述

IF 4.4 Q1 OPTICS
Pontus Laurell, Allen Scheie, Elbio Dagotto, D. Alan Tennant
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引用次数: 0

摘要

材料中纠缠态和量子相关性的检测和证明具有基础性和深远的意义,近年来取得了重大进展。它既影响了对量子多体现象的基础科学的理解,也影响了适合新技术的系统的识别。在量子信息理论的背景下,已经开发了适合于凝聚态物质的框架,将测量与纠缠和相干联系起来。它们采用纠缠见证和量子相关度量的形式。这些量的基本理论,它们与凝聚态实验技术的关系,以及它们在实际材料中的应用进行了全面的回顾。此外,还介绍了它们在相关电子、纠缠动力学和纠缠光谱探针等方面的应用,以及它们在相关电子、纠缠动力学和纠缠光谱探针等方面的相对优缺点。考虑到这一新兴研究的跨学科性质和正在取得的实质性进展,提供了从基础到应用的可获得和实用的治疗。特别强调可通过集体测量获得的数量,包括磁化率和光谱技术。这包括磁化率见证、单缠结、并发和双缠结、双点量子不和谐以及量子费雪信息等量子相干测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Witnessing Entanglement and Quantum Correlations in Condensed Matter: A Review

Witnessing Entanglement and Quantum Correlations in Condensed Matter: A Review

The detection and certification of entanglement and quantum correlations in materials is of fundamental and far-reaching importance, and has seen significant recent progress. It impacts both the understanding of the basic science of quantum many-body phenomena as well as the identification of systems suitable for novel technologies. Frameworks suitable to condensed matter that connect measurements to entanglement and coherence have been developed in the context of quantum information theory. These take the form of entanglement witnesses and quantum correlation measures.

The underlying theory of these quantities, their relation to condensed matter experimental techniques, and their application to real materials are comprehensively reviewed. In addition, their usage in, e.g., protocols, the relative advantages and disadvantages of witnesses and measures, and future prospects in, e.g., correlated electrons, entanglement dynamics, and entangled spectroscopic probes, are presented. Consideration is given to the interdisciplinary nature of this emerging research and substantial ongoing progress by providing an accessible and practical treatment from fundamentals to application. Particular emphasis is placed on quantities accessible to collective measurements, including by susceptibility and spectroscopic techniques. This includes the magnetic susceptibility witness, one-tangle, concurrence and two-tangle, two-site quantum discord, and quantum coherence measures such as the quantum Fisher information.

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CiteScore
7.90
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