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首页> 外文期刊>Physical review, B >Exact and density matrix renormalization group studies of two mixed spin-(1/2,5/2,1/2) branched-chain models developed for a heterotrimetallic Fe-Mn-Cu coordination polymer
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Exact and density matrix renormalization group studies of two mixed spin-(1/2,5/2,1/2) branched-chain models developed for a heterotrimetallic Fe-Mn-Cu coordination polymer

机译:对异过Fe-Mn-Cu配位聚合物开发的两种混合旋转(1 / 2,5 / 2,1 / 2)支链模型的精确和密度基质重新定位组研究

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摘要

The mixed-spin Ising-Heisenberg and Heisenberg branched chains whose magnetic backbone consists of regularly alternating spins 1/2 and 5/2, the latter of which are additionally coupled to an extra spin 1/2 providing lateral branching, are investigated using exact analytical and density matrix renormalization group (DMRG) methods. The proposed spin-chain models capture some relevant aspects of the heterotrimetallic coordination polymer [CuMn(L)][Fe(bpb)(CN)(2)] center dot ClO4 center dot H2O. The mixed spin-(1/2, 5/2, 1/2) Ising-Heisenberg branched chain is exactly solvable under the assumption of an Ising-like exchange coupling along the chain, while the lateral branching is treated as an anisotropic XXZ Heisenberg exchange interaction. We determine the ground-state phase diagram and quantify a bipartite quantum entanglement between dimers at lateral branching. It is shown that the studied mixed-spin Ising-Heisenberg branched chain accurately fits available experimental data for temperature dependence of the magnetic susceptibility. The ground-state phase diagram of the analogous mixed spin-(1/2, 5/2, 1/2) Heisenberg branched chain is obtained within the DMRG method. The ground-state phase diagrams of the Ising-Heisenberg and its full Heisenberg counterpart are contrasted. In particular, the ground-state phase diagram of the mixed-spin Heisenberg branched chain involves a special Gaussian critical point, for which a proper finite-size scaling analysis is provided to accurately estimate its location and the correlation length critical exponent.
机译:混合旋转ising-heisenberg和Heisenberg支链,其磁性骨架由定期交替旋转1/2和5/2组成,后者另外偶联与提供横向支化的额外旋转1/2,进行精确分析和密度矩阵重新定位组(DMRG)方法。所提出的旋转链模型捕获异质配合聚合物[CUMN(L)] [Fe(BPB)(CN)(2)]中心点CLO4中心点H2O的一些相关方面。混合旋转 - (1/2,5 / 2,1 / 2)ising-heisenberg支链在沿链条的静物相结合的假设下完全可溶,而横向分支被视为各向异性XXZ Heisenberg交换互动。我们确定地态相图,并在横向分支下量化二聚体之间的二分量子缠结。结果表明,学习的混合旋转型 - Heisenberg支链准确地适合可用的实验数据,用于磁化率的温度依赖性。在DMRG方法中获得类似混合旋转 - (1/2,5 / 2,1 / 2)Heisenberg支链的地态相图。对比的是ising-heisenberg及其完整的Heisenberg对应物的地态相图。特别地,混合旋转Heisenberg分支链的地态相图涉及特殊的高斯临界点,其中提供了适当的有限尺寸缩放分析,以准确估计其位置和相关长度临界指数。

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