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相互连接的三角双锥体平面晶格上自旋-1/2伊辛-海森堡模型的基态、磁化过程和二分量子纠缠

Ground State, Magnetization Process and Bipartite Quantum Entanglement of a Spin-1/2 Ising-Heisenberg Model on Planar Lattices of Interconnected Trigonal Bipyramids.

作者信息

Gálisová Lucia, Kaczor Michał

机构信息

Institute of Manufacturing Management, Faculty of Manufacturing Technologies with the Seat in Prešov, Technical University of Košice, Bayerova 1, 080 01 Prešov, Slovakia.

The Doctoral School of University of Rzeszów, University of Rzeszów, Rejtana 16C, 35-935 Rzeszów, Poland.

出版信息

Entropy (Basel). 2021 Dec 12;23(12):1671. doi: 10.3390/e23121671.

Abstract

The ground state, magnetization scenario and the local bipartite quantum entanglement of a mixed spin-1/2 Ising-Heisenberg model in a magnetic field on planar lattices formed by identical corner-sharing bipyramidal plaquettes is examined by combining the exact analytical concept of generalized decoration-iteration mapping transformations with Monte Carlo simulations utilizing the Metropolis algorithm. The ground-state phase diagram of the model involves six different phases, namely, the standard ferrimagnetic phase, fully saturated phase, two unique quantum ferrimagnetic phases, and two macroscopically degenerate quantum ferrimagnetic phases with two chiral degrees of freedom of the Heisenberg triangular clusters. The diversity of ground-state spin arrangement is manifested themselves in seven different magnetization scenarios with one, two or three fractional plateaus whose values are determined by the number of corner-sharing plaquettes. The low-temperature values of the concurrence demonstrate that the bipartite quantum entanglement of the Heisenberg spins in quantum ferrimagnetic phases is field independent, but twice as strong if the Heisenberg spin arrangement is unique as it is two-fold degenerate.

摘要

通过将广义装饰迭代映射变换的精确分析概念与利用 metropolis 算法的蒙特卡罗模拟相结合,研究了由相同角共享双棱锥平面晶格组成的混合自旋 - 1/2 伊辛 - 海森堡模型在磁场中的基态、磁化情况和局部二分量子纠缠。该模型的基态相图包含六个不同的相,即标准亚铁磁相、完全饱和相、两个独特的量子亚铁磁相,以及两个具有海森堡三角形簇两个手性自由度的宏观简并量子亚铁磁相。基态自旋排列的多样性表现为七种不同的磁化情况,具有一个、两个或三个分数平台,其值由角共享平面晶格的数量决定。并发的低温值表明,量子亚铁磁相中海森堡自旋的二分量子纠缠与场无关,但如果海森堡自旋排列是独特的,则其强度是双重简并时的两倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28ac/8700496/09738c1c2cb7/entropy-23-01671-g001.jpg

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