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Multistability in an unusual phase diagram induced by the competition between antiferromagnetic-like short-range and ferromagnetic-like long-range interactions

机译:在反铁磁性的短距离和铁磁样的远程相互作用之间的竞争引起的不寻常相框中的多个

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摘要

The interplay between competing short-range (SR) and long-range (LR) interactions can cause nontrivial structures in phase diagrams. Recently, horn-shaped unusual structures were found by Monte Carlo simulations in the phase diagram of the Ising antiferromagnet (IA) with infinite-range ferromagnetic-like (F) interactions [Phys. Rev. B 93, 064109 (2016); 96, 174428 (2017)], and also in an IA with LR interactions of elastic origin modeling spin-crossover materials [Phys. Rev. B 96, 144425 (2017)]. To clarify the nature of the phases associated with the horn structures, we study the phase diagram of the IA model with infinite-range F interactions by applying a variational free energy in a cluster mean-field (CMF) approximation. While the simple Bragg-Williams mean-field theory for each sublattice does not produce a horn structure, we find such structures with the CMF method. This confirms that the local thermal fluctuations enabled by the multisite clusters are essential for this phenomenon. We investigate in detail the structure of metastable phases in the phase diagram. In contrast to the phase diagram obtained by the Monte Carlo studies, we find a triple point, at which ferromagnetic-like, antiferromagnetic-like, and disordered phases coexist, and also six tristable regions accompanying the horn structure. We also point out that several characteristic endpoints of first-order transitions appear in the phase diagram. We propose three possible scenarios for the transitions related to the tristable regions. Finally, we discuss the relation between the triple point in this phase diagram and that of a possible lattice-gas model, in which solid, liquid, and gas phases can coexist.
机译:竞争短程(SR)和远程(LR)相互作用之间的相互作用可能导致相图中的非竞争结构。最近,蒙特卡罗模拟中发现了岩形不寻常的结构,在Ising antiferromagnet(IA)的相图中,具有无限范围的铁磁样(F)相互作用[物理。 Rev. B 93,064109(2016);同样在具有LR相互作用的IA的IA中,弹性起源模拟自旋交叉材料[物理。 Rev. B 96,144425(2017)]。为了阐明与喇叭结构相关的阶段的性质,我们通过在簇平均字段(CMF)近似中应用变分自由能量来研究具有无限范围F交互的IA模型的相图。虽然每个Sublattice的简单布拉格威廉姆斯意思场理论不会产生喇叭结构,但我们发现使用CMF方法的这种结构。这证实了多路集群使能的局部热波动对于这种现象至关重要。我们详细研究了相图中的亚稳态阶段的结构。与由蒙特卡罗研究所获得的相图相反,我们发现三重点,在该三角形,在该三角点,在该三角形中,相对于喇叭结构的六个拖曳区域也是六个拖曳区域。我们还指出,在相图中出现了几次转换的几个特征终点。我们提出了三种可能的有关追溯区域的过渡的场景。最后,我们讨论该相图中的三维点与可能的晶格气模型之间的关系,其中固体,液体和气体相可以共存。

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  • 来源
    《Physical review, B》 |2018年第14期|共13页
  • 作者单位

    Natl Inst Mat Sci Res Ctr Adv Measurement &

    Characterizat Tsukuba Ibaraki 3050047 Japan;

    Florida State Univ Dept Phys Tallahassee FL 32306 USA;

    Univ Tokyo Grad Sch Sci Dept Phys Bunkyo Ku Tokyo 1130033 Japan;

    Univ Tokyo Grad Sch Sci Dept Phys Bunkyo Ku Tokyo 1130033 Japan;

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