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首页> 外文期刊>Journal of Physics. Condensed Matter >Phase transitions and thermal entanglement of the distorted Ising-Heisenberg spin chain: topology of multiple-spin exchange interactions in spin ladders
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Phase transitions and thermal entanglement of the distorted Ising-Heisenberg spin chain: topology of multiple-spin exchange interactions in spin ladders

机译:扭曲ising-heisenberg旋转链的相变和热缠结:旋转梯子中多旋交换相互作用的拓扑

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摘要

We consider a symmetric spin-1/2 Ising-XXZ double sawtooth spin ladder obtained from distorting a spin chain, with the XXZ interaction between the interstitial Heisenberg dimers (which are connected to the spins based on the legs via an Ising-type interaction), the Ising coupling between nearest-neighbor spins of the legs and rungs spins, respectively, and additional cyclic four-spin exchange (ring exchange) in the square plaquette of each block. The presented analysis supplemented by results of the exact solution of the model with infinite periodic boundary implies a rich ground state phase diagram. As well as the quantum phase transitions, the characteristics of some of the thermodynamic parameters such as heat capacity, magnetization and magnetic susceptibility are investigated. We prove here that among the considered thermodynamic and thermal parameters, solely heat capacity is sensitive versus the changes of the cyclic four-spin exchange interaction. By using the heat capacity function, we obtain a singularity relation between the cyclic four-spin exchange interaction and the exchange coupling between pair spins on each rung of the spin ladder. All thermal and thermodynamic quantities under consideration should be investigated by regarding those points which satisfy the singularity relation. The thermal entanglement within the Heisenberg spin dimers is investigated by using the concurrence, which is calculated from a relevant reduced density operator in the thermodynamic limit.
机译:我们考虑从扭曲旋转链的对称旋转-1 / 2 ising-xxz双锯齿旋转梯子,间隙Heisenberg二聚体之间的XXZ相互作用(通过ising型相互作用基于腿部连接到旋转) ,分别在腿部的最近邻居之间的弯曲耦合和梯级旋转,以及每个块的方形斑块中的附加循环四旋交换(环形交换)。通过无限周期边界的模型精确解决方案的结果补充了所提出的分析意味着丰富的地面态相图。除了量子相变,还研究了一些热力学参数的特性,例如热容量,磁化和磁性敏感性。我们在此证明,在考虑的热力学和热参数中,Sylely热容量对循环四自旋交换相互作用的变化相比。通过使用热容量功能,我们在旋转梯子的每个梯级上获得循环四自旋交换相互作用与对旋转之间的交换耦合之间的奇异关系。关于满足奇点关系的那些点,应研究所考虑的所有热力和热力学量。通过使用并发来研究Heisenberg旋转二聚体内的热缠结,其在热力学极限中由相关的减小的密度操作员计算。

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