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层状铁磁体中自旋能斯特效应与纠缠负性的相互作用:基于精确对角化的研究

Interplay of Spin Nernst Effect and Entanglement Negativity in Layered Ferrimagnets: A Study via Exact Diagonalization.

作者信息

Lima Leonardo S

机构信息

Department of Physics, Federal Technological Education Center of Minas Gerais, Belo Horizonte 30510-000, MG, Brazil.

出版信息

Entropy (Basel). 2024 Dec 6;26(12):1060. doi: 10.3390/e26121060.

Abstract

In this paper, we analyzed the influence of the spin Nernst effect on quantum correlation in a layered ferrimagnetic model. In the study of three-dimensional ferrimagnets, the focus is on materials with a specific arrangement of spins, where the neighboring spins are parallel and the others are antiparallel. The anisotropic nature of these materials means that the interactions between spins depend on their relative orientations in different directions. We analyzed the effect of magnon bands induced by the coupling parameters on entanglement negativity. The influence of the coupling parameters of the topologic phase transition on quantum entanglement is investigated as well. Numerical simulations using the Lanczos algorithm and exact diagonalization for different lattice sizes are compared with the results of spin wave theory.

摘要

在本文中,我们分析了自旋能斯特效应在层状亚铁磁模型中对量子关联的影响。在三维亚铁磁体的研究中,重点关注具有特定自旋排列的材料,其中相邻自旋平行,其他自旋反平行。这些材料的各向异性意味着自旋之间的相互作用取决于它们在不同方向上的相对取向。我们分析了由耦合参数诱导的磁振子能带对纠缠负性的影响。还研究了拓扑相变的耦合参数对量子纠缠的影响。使用兰索斯算法和针对不同晶格尺寸的精确对角化进行的数值模拟与自旋波理论的结果进行了比较。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6fd2/11675835/1d5fb32e0622/entropy-26-01060-g0A1.jpg

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