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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Phase diagrams and free-energy landscapes for model spin-crossover materials with antiferromagnetic-like nearest-neighbor and ferromagnetic-like long-range interactions
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Phase diagrams and free-energy landscapes for model spin-crossover materials with antiferromagnetic-like nearest-neighbor and ferromagnetic-like long-range interactions

机译:具有类似反铁磁的最近邻域和类似铁磁的长程相互作用的自旋交叉模型材料的相图和自由能态图

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摘要

We present phase diagrams, free-energy landscapes, and order-parameter distributions for a model spin-crossover material with a two-step transition between the high-spin and low-spin states (a square-lattice Ising model with antiferromagnetic-like nearest-neighbor and ferromagnetic-like long-range interactions) [P. A. Rikvold et al, Phys. Rev. B 93,064109 (2016)]. The results are obtained by a recently introduced, macroscopically constrained Wang-Landau Monte Carlo simulation method [Phys. Rev. E 95, 053302 (2017)]. The method's computational efficiency enables calculation of thermodynamic quantities for a wide range of temperatures, applied fields, and long-range interaction strengths. For long-range interactions of intermediate strength, tricritical points in the phase diagrams are replaced by pairs of critical end points and mean-field critical points that give rise to horn-shaped regions of metastability. The corresponding free-energy landscapes offer insights into the nature of asymmetric, multiple hysteresis loops that have been experimentally observed in spin-crossover materials characterized by competing short-range interactions and long-range elastic interactions.
机译:我们给出了模型自旋交叉材料的相图,自由能态势和阶跃参数分布,其中自旋交叉材料在高自旋状态和低自旋状态之间进行了两步过渡(方格伊辛模型具有类似反铁磁的最近值) -邻居和类似铁磁的远程相互作用)[P。 A.Rikvold等,物理学。版本B 93,064109(2016)]。结果是通过最近引入的,宏观约束的Wang-Landau Monte Carlo模拟方法获得的。修订版E 95,053302(2017)]。该方法的计算效率可计算出各种温度,应用领域和远距离相互作用强度的热力学量。对于中等强度的远程相互作用,相图中的三临界点被成对的临界端点和平均场临界点对所取代,从而形成了亚稳的角形区域。相应的自由能态势提供了对非对称多重磁滞回线性质的洞察力,这些回旋回路已在自旋交越材料中以竞争性的短程相互作用和长程弹性相互作用为特征进行了实验观察。

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  • 来源
    《Physical review. B, Condensed Matter And Materals Physics》 |2017年第17期|174428.1-174428.16|共16页
  • 作者单位

    Department of Physics, Florida State University, Tallahassee, Florida 32306-4350, USA;

    Department of Physics, Florida State University, Tallahassee, Florida 32306-4350, USA;

    Department of Physics, Florida State University, Tallahassee, Florida 32306-4350, USA;

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