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海森堡自旋链模型的杨式关系

The Yangian relations of Heisenberg spin chain model.

作者信息

Du Guijiao, Xue Kang, Zhou Chengcheng

机构信息

School of Science, Changchun University of Science and Technology, Changchun, 130022, China.

School of Physics, Northeast Normal University, Changchun, 130024, China.

出版信息

Sci Rep. 2021 Jul 16;11(1):14615. doi: 10.1038/s41598-021-94050-6.

Abstract

In this paper, we investigate the Yangian relations of Heisenberg spin chain systems. Firstly, we consider the closed XXZ spin chain model, through the Heisenberg spin XXZ model, we found the Hamiltonians for one kind system of three adjacent partial particles interaction systems. The model's constitution rules of energy levels and energy states which expand from the few-particle system to multi-particle system have good regularity. In this system, we found Yangian's law and illustrate it through graphs. Secondly, we further consider the closed XXZ spin chain's generalization of other three neighboring particles interaction systems from few-particle system to multi-particle system. Finally, we also discussed the laws of the three adjacent particles system of some models, they are the XXZ model with twist boundary condition, the open XXZ spin chain model and the XXZ model containing the next neighbor. In addition, not only XXZ model, XXX model, XY model and Ising model, but the relevant laws of spin-1 systems of these models were also discussed, they have similar rules to the XXZ model. Through calculation and research, the eigensystems of these models all have good Yangian and constitution laws.

摘要

在本文中,我们研究海森堡自旋链系统的杨(Yangian)关系。首先,我们考虑封闭的XXZ自旋链模型,通过海森堡自旋XXZ模型,我们找到了一种三个相邻部分粒子相互作用系统的哈密顿量。该模型从少粒子系统到多粒子系统的能级和能态构成规则具有良好的规律性。在这个系统中,我们发现了杨(Yangian)的规律并用图形进行了说明。其次,我们进一步考虑从少粒子系统到多粒子系统的封闭XXZ自旋链对其他三个相邻粒子相互作用系统的推广。最后,我们还讨论了一些模型的三个相邻粒子系统的规律,它们是具有扭结边界条件的XXZ模型、开放的XXZ自旋链模型以及包含次近邻的XXZ模型。此外,不仅XXZ模型、XXX模型、XY模型和伊辛(Ising)模型,这些模型的自旋 - 1系统的相关规律也进行了讨论,它们与XXZ模型有相似的规则。通过计算和研究,这些模型的本征系统都具有良好的杨(Yangian)和构成规律。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9bb/8285397/ac091bb0e533/41598_2021_94050_Fig1_HTML.jpg

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