具有U(1)对称性的非线性Sigma模型的退化状态——簇性质违背的研究

T. Munehisa
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引用次数: 1

摘要

量子理论中的纠缠是一个使许多科学家感到困惑的概念。这一概念意味着集群属性(即在充分分离的两个事件之间没有关系)是非平凡的。在作者最近发表的一些量子自旋系统的著作中,对自旋算子的相关函数中的簇性违反进行了广泛和定量的检验。先前对这些量子反铁磁体的研究表明,这种破坏是由连续对称性自发断裂的系统中的简并态引起的。由于这种破缺存在于许多材料中,如高温超导体和超流体,因此能否观察到它们簇性质的破缺是一个重要的问题。为了回答这个问题,本文研究了一个具有U(1)对称性的量子非线性sigma模型。众所周知,该模型作为量子自旋系统的有效模型,也可以应用于许多材料的研究。考虑到简并态的存在是破坏的必要条件,我们在理论论证的基础上进行了数值计算,在非线性模型中找到了这些状态。然后,成功地找到了模型中的简并态,我们得出结论,在许多非线性sigma模型适用的材料中,有机会观察到簇性质的破坏。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Degenerate States in Nonlinear Sigma Model with U(1) Symmetry —For Study on Violation of Cluster Property
Entanglement in quantum theory is a concept that has confused many scientists. This concept implies that the cluster property, which means no relations between sufficiently separated two events, is non-trivial. In the works for some quantum spin systems, which have been recently published by the author, extensive and quantitative examinations were made about the violation of cluster property in the correlation function of the spin operator. The previous study of these quantum antiferromagnets showed that this violation is induced by the degenerate states in the systems where the continuous symmetry spontaneously breaks. Since this breaking is found in many materials such as the high temperature superconductors and the superfluidity, it is an important question whether we can observe the violation of the cluster property in them. As a step to answer this question we study a quantum nonlinear sigma model with U(1) symmetry in this paper. It is well known that this model, which has been derived as an effective model of the quantum spin systems, can also be applied to investigations of many materials. Notifying that the existence of the degenerate states is essential for the violation, we made numerical calculations in addition to theoretical arguments to find these states in the nonlinear sigma model. Then, successfully finding the degenerate states in the model, we came to a conclusion that there is a chance to observe the violation of cluster property in many materials to which the nonlinear sigma model applies.
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