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具有四自旋相互作用的自旋1/2伊辛-海森堡和海森堡双锯齿链的磁化平台与增强的磁热效应

Magnetization plateaus and enhanced magnetocaloric effect of a spin-1/2 Ising-Heisenberg and Heisenberg double sawtooth ladder with four-spin interaction.

作者信息

Arian Zad Hamid, Ohanyan Vadim, Zoshki Azam, Strečka Jozef

机构信息

A.I. Alikhanyan National Science Laboratory, 0036 Yerevan, Armenia.

Department of Theoretical Physics and Astrophysics, Faculty of Science, P. J. Sǎfárik University, Park Angelinum 9, 041 54 Košice, Slovak Republic.

出版信息

Phys Rev E. 2023 Oct;108(4-1):044132. doi: 10.1103/PhysRevE.108.044132.

Abstract

The ground state, entropy, and magnetic Grüneisen parameter of the antiferromagnetic spin-1/2 Ising-Heisenberg model on a double sawtooth ladder are rigorously investigated using the classical transfer-matrix technique. The model includes the XXZ interaction between the interstitial Heisenberg dimers, the Ising coupling between nearest-neighbor spins of the legs and rungs, and additional cyclic four-spin Ising term in each square plaquette. For a particular value of the cyclic four-spin exchange, we found in the ground-state phase diagram of the Ising-Heisenberg ladder a quadruple point, at which four different ground states coexist together. During an adiabatic demagnetization process, a fast cooling accompanied with an enhanced magnetocaloric effect can be detected near this quadruple point. The ground-state phase diagram of the Ising-Heisenberg ladder is confronted with the zero-temperature magnetization process of the purely quantum Heisenberg ladder, which is calculated by using exact diagonalization based on the Lanczos algorithm for a finite-size ladder of 24 spins and the density-matrix renormalization group simulations for a finite-size ladder with up to 96 spins. Some indications of the existence of intermediate magnetization plateaus in the magnetization process of the full Heisenberg model for a small but nonzero four-spin Ising coupling were found. The DMRG results reveal that the quantum Heisenberg double sawtooth ladder exhibits some quantum Luttinger spin-liquid phase regions that are absent in the Ising-Heisenberg counterpart model. Except this difference, the magnetic behavior of the full Heisenberg model is quite analogous to its simplified Ising-Heisenberg counterpart and, hence, may bring insight into the fully quantum Heisenberg model from rigorous results for the Ising-Heisenberg model.

摘要

利用经典转移矩阵技术,对双锯齿形梯子上的反铁磁自旋 - 1/2伊辛 - 海森堡模型的基态、熵和磁格林艾森参数进行了严格研究。该模型包括间隙海森堡二聚体之间的XXZ相互作用、腿和梯级最近邻自旋之间的伊辛耦合,以及每个方形格子中的附加循环四自旋伊辛项。对于循环四自旋交换的特定值,我们在伊辛 - 海森堡梯子的基态相图中发现了一个四重点,在该点处四种不同的基态共存。在绝热退磁过程中,在这个四重点附近可以检测到伴随着增强磁热效应的快速冷却。伊辛 - 海森堡梯子的基态相图与纯量子海森堡梯子的零温磁化过程进行了对比,后者是通过基于兰索斯算法对24个自旋的有限尺寸梯子进行精确对角化以及对多达96个自旋的有限尺寸梯子进行密度矩阵重整化群模拟来计算的。对于小但非零的四自旋伊辛耦合,在全海森堡模型的磁化过程中发现了一些中间磁化平台存在的迹象。密度矩阵重整化群结果表明,量子海森堡双锯齿形梯子表现出一些量子卢廷格自旋液体相区域,而这些区域在伊辛 - 海森堡对应模型中不存在。除了这个差异外,全海森堡模型的磁行为与其简化的伊辛 - 海森堡对应模型非常相似,因此,可能从伊辛 - 海森堡模型的严格结果中为全量子海森堡模型带来见解。

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