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贝雷津斯基-科斯特利茨-索利斯转变的研究:一种无监督机器学习方法。

Study of the Berezinskii-Kosterlitz-Thouless transition: an unsupervised machine learning approach.

作者信息

Haldar Sumit, Rahaman Sk Saniur, Kumar Manoranjan

机构信息

S. N. Bose National Centre for Basic Sciences, J D Block, Sector III, Salt Lake City, Kolkata 700106, India.

出版信息

J Phys Condens Matter. 2024 Jul 16;36(41). doi: 10.1088/1361-648X/ad5d35.

Abstract

The Berezinskii-Kosterlitz-Thouless (BKT) transition in magnetic systems is an intriguing phenomenon, and estimating the BKT transition temperature is a long-standing problem. In this work, we explore anisotropic classical Heisenberg XY and XXZ models with ferromagnetic exchange on a square lattice and antiferromagnetic exchange on a triangular lattice using an unsupervised machine learning approach called principal component analysis (PCA). The earlier PCA studies of the BKT transition temperature (TBKT) using the vorticities as input fail to give any conclusive results, whereas, in this work, we show that the proper analysis of the first principal component-temperature curve can estimateTBKTwhich is consistent with the existing literature. This analysis works well for the anisotropic classical Heisenberg with a ferromagnetic exchange on a square lattice and for frustrated antiferromagnetic exchange on a triangular lattice. The classical anisotropic Heisenberg antiferromagnetic model on the triangular lattice has two close transitions: theTBKTand Ising-like phase transition for chirality atTc, and it is difficult to separate these transition points. It is also noted that using the PCA method and manipulation of their first principal component not only makes the separation of transition points possible but also determines transition temperature.

摘要

磁性系统中的贝雷津斯基-科斯特利茨- Thouless(BKT)转变是一种有趣的现象,估计BKT转变温度是一个长期存在的问题。在这项工作中,我们使用一种名为主成分分析(PCA)的无监督机器学习方法,探索了在正方形晶格上具有铁磁交换以及在三角形晶格上具有反铁磁交换的各向异性经典海森堡XY和XXZ模型。早期使用涡度作为输入对BKT转变温度(TBKT)进行的主成分分析研究未能得出任何确凿的结果,而在这项工作中,我们表明对第一主成分-温度曲线进行适当分析可以估计TBKT,这与现有文献一致。这种分析对于在正方形晶格上具有铁磁交换的各向异性经典海森堡模型以及在三角形晶格上具有受挫反铁磁交换的模型都很有效。三角形晶格上的经典各向异性海森堡反铁磁模型有两个相近的转变:TBKT和在Tc处手性的类伊辛相变,并且很难区分这些转变点。还需要注意的是,使用PCA方法并对其第一主成分进行处理不仅使区分转变点成为可能,还能确定转变温度。

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