Sokolov Boris, Rossi Matteo A C, García-Pérez Guillermo, Maniscalco Sabrina
QTF Centre of Excellence, Department of Physics, Faculty of Science, University of Helsinki, Helsinki, Finland.
Algorithmiq Ltd, Kanavakatu 3C, Helsinki 00160, Finland.
Philos Trans A Math Phys Eng Sci. 2022 Jul 11;380(2227):20200421. doi: 10.1098/rsta.2020.0421. Epub 2022 May 23.
We introduce an experimentally accessible network representation for many-body quantum states based on entanglement between all pairs of its constituents. We illustrate the power of this representation by applying it to a paradigmatic spin chain model, the XX model, and showing that it brings to light new phenomena. The analysis of these entanglement networks reveals that the gradual establishment of quasi-long range order is accompanied by a symmetry regarding single-spin concurrence distributions, as well as by instabilities in the network topology. Moreover, we identify the existence of emergent entanglement structures, spatially localized communities enforced by the global symmetry of the system that can be revealed by model-agnostic community detection algorithms. The network representation further unveils the existence of structural classes and a cyclic self-similarity in the state, which we conjecture to be intimately linked to the community structure. Our results demonstrate that the use of tools and concepts from complex network theory enables the discovery, understanding and description of new physical phenomena even in models studied for decades. This article is part of the theme issue 'Emergent phenomena in complex physical and socio-technical systems: from cells to societies'.
我们基于多体量子态各组成部分之间的纠缠,引入了一种实验上可实现的网络表示。我们通过将其应用于一个典型的自旋链模型——XX模型,来说明这种表示的强大之处,并表明它揭示了新的现象。对这些纠缠网络的分析表明,准长程有序的逐渐建立伴随着单自旋并发分布的对称性,以及网络拓扑结构的不稳定性。此外,我们确定了涌现纠缠结构的存在,即由系统的全局对称性强制形成的空间局部化群落,这可以通过与模型无关的群落检测算法揭示出来。这种网络表示还揭示了状态中存在结构类和循环自相似性,我们推测这与群落结构密切相关。我们的结果表明,即使在已经研究了数十年的模型中,使用复杂网络理论的工具和概念也能够发现、理解和描述新的物理现象。本文是主题为“复杂物理和社会技术系统中的涌现现象:从细胞到社会”这一特刊的一部分。