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Finite-size scaling of Monte Carlo simulations for the fcc Ising antiferromagnet: Effects of the low-temperature phase degeneracy

机译:用于FCC ising onteRomagnet的Monte Carlo模拟的有限尺寸缩放:低温阶段退化的影响

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摘要

The Ising antiferromagnet on a face-centered cubic (fcc) lattice with nearest-neighbor interaction only is well known to exhibit a macroscopic (exponential in the system size L) ground-state degeneracy. With increasing temperature, this degeneracy is expected to be lifted and the model undergoes a first-order phase transition. For a model with an exponential degeneracy in the whole low-temperature phase, it was recently found that the finite-size scaling behavior is governed by leading correction terms similar to L-2 instead of similar to L-3 as usual. To test the conjecture that such a transmuted behavior may effectively persist also for the fcc antiferromagnet up to some crossover system size, we have performed parallel multicanonical Monte Carlo simulations for lattices of linear size L = 18 with periodic boundary conditions and determined various inverse pseudo phase transition temperatures, as well as the extremal values of the specific heat and the energetic Binder parameter. We indeed find that, for the simulated lattice sizes, the conjectured transmuted finite-size scaling ansatz fits the data better than the standard ansatz. On this basis, we extrapolate for the transition temperature an estimate of T-0 = 1.735047(46).
机译:基于邻居相互作用的面为中心的立方(FCC)晶格上的ising反霉素仅众所周知,众所周知是在地 - 状态退化的宏观(系统尺寸L)的宏观(指数中。随着温度的增加,预计该退化将被提升,并且该模型经历一阶相转变。对于在整个低温阶段具有指数退化的模型,最近发现有限尺寸的缩放行为通过与L-2类似的前导校正项来控制,而不是像往常一样与L-3类似。为了测试猜测,这种传输行为可以有效地持续到FCC反霉铁的达到一些交叉系统尺寸,我们已经对线性尺寸L LT的格子进行了平行的多碳蒙特卡罗模拟L. = 18,周期性边界条件并确定各种逆伪相变温度,以及特定热量的极值和能量粘合剂参数。我们确实发现,对于模拟的晶格尺寸,猜测的传输有限大小缩放ANSATZ比标准ANSATZ更好地符合数据。在此基础上,我们推断过渡温度估计T-0 = 1.735047(46)。

著录项

  • 来源
    《Physical review, B》 |2018年第17期|共8页
  • 作者

    Stuebel Ronja; Janke Wolfhard;

  • 作者单位

    Univ Leipzig Inst Theoret Phys Postfach 100 920 D-04009 Leipzig Germany;

    Univ Leipzig Inst Theoret Phys Postfach 100 920 D-04009 Leipzig Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 固体物理学;
  • 关键词

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