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在三重和科斯特利茨- Thouless 临界点处,自旋 1/2 Ising-Heisenberg 和 Heisenberg 支链的中间一半磁化平台的崩溃。

Breakdown of intermediate one-half magnetization plateau of spin-1/2 Ising-Heisenberg and Heisenberg branched chains at triple and Kosterlitz-Thouless critical points.

机构信息

Institute of Physics, Faculty of Science, P. J. Šafárik University, 04001 Košice, Slovakia.

Instituto de Física, Universidade Federal de Alagoas, 57072-970 Maceió-AL, Brazil.

出版信息

Phys Rev E. 2019 Oct;100(4-1):042127. doi: 10.1103/PhysRevE.100.042127.

Abstract

The spin-1/2 Ising-Heisenberg branched chain composed of regularly alternating Ising spins and Heisenberg dimers involving an additional side branching is rigorously solved in a magnetic field by the transfer-matrix approach. The ground-state phase diagram, the magnetization process and the concurrence measuring a degree of bipartite entanglement within the Heisenberg dimers are examined in detail. Three different ground states were found depending on a mutual interplay between the magnetic field and two different coupling constants: the modulated quantum antiferromagnetic phase, the quantum ferrimagnetic phase, and the classical ferromagnetic phase. Two former quantum ground states are manifested in zero-temperature magnetization curves as intermediate plateaus at zero and one-half of the saturation magnetization, whereas the one-half plateau disappears at a triple point induced by a strong-enough ferromagnetic Ising coupling. The ground-state phase diagram and zero-temperature magnetization curves of the analogous spin-1/2 Heisenberg branched chain were investigated using density-matrix renormalization group calculations. The latter fully quantum Heisenberg model involves, besides two gapful phases manifested as zero and one-half magnetization plateaus, gapless quantum spin-liquid phase. The intermediate one-half plateau of the spin-1/2 Heisenberg branched chain vanishes at Kosterlitz-Thouless quantum critical point between gapful and gapless quantum ground states unlike the triple point of the spin-1/2 Ising-Heisenberg branched chain.

摘要

由规则交替的 Ising 自旋和涉及附加侧支的 Heisenberg 二聚体组成的自旋 1/2 Ising-Heisenberg 支化链在磁场中通过转移矩阵方法得到了严格求解。详细研究了基态相图、磁化过程和在 Heisenberg 二聚体中测量双粒子纠缠程度的并合度。根据磁场和两个不同耦合常数之间的相互作用,发现了三种不同的基态:调制量子反铁磁相、量子亚铁磁相和经典铁磁相。前两个量子基态在零温磁化曲线中表现为零和半饱和磁化强度的中间平台,而当铁磁 Ising 耦合足够强时,半平台在三叉点消失。使用密度矩阵重整化群计算研究了类似的自旋 1/2 Heisenberg 支化链的基态相图和零温磁化曲线。后者全量子 Heisenberg 模型除了表现为零和半磁化平台的两个有隙相之外,还包括无隙量子自旋液体相。与自旋 1/2 Ising-Heisenberg 支化链的三叉点不同,自旋 1/2 Heisenberg 支化链的中间半平台在有隙和无隙量子基态之间的 Kosterlitz-Thouless 量子临界点消失。

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