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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Random-field-induced disordering mechanism in a disordered ferromagnet: Between the Imry-Ma and the standard disordering mechanism
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Random-field-induced disordering mechanism in a disordered ferromagnet: Between the Imry-Ma and the standard disordering mechanism

机译:铁磁体中随机场诱导的无序机制:在Imry-Ma与标准无序机制​​之间

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摘要

Random fields disorder Ising ferromagnets by aligning single spins in the direction of the random field in three space dimensions, or by flipping large ferromagnetic domains at dimensions two and below. While the former requires random fields of typical magnitude similar to the interaction strength, the latter Imry-Ma mechanism only requires infinitesimal random fields. Recently, it has been shown that for dilute anisotropic dipolar systems a third mechanism exists, where the ferromagnetic phase is disordered by finite-size glassy domains at a random field of finite magnitude that is considerably smaller than the typical interaction strength. Using large-scale Monte Carlo simulations and zero-temperature numerical approaches, we show that this mechanism applies to disordered ferromagnets with competing short-range ferromagnetic and antiferromagnetic interactions, suggesting its generality in ferromagnetic systems with competing interactions and an underlying spin-glass phase. A finite-size-scaling analysis of the magnetization distribution suggests that the transition might be first order.
机译:随机场无序伊辛铁磁体是通过在三个空间维度上将单个自旋沿随机磁场的方向对齐,或者通过在维度2及以下维度上翻转大铁磁畴来实现的。前者需要具有与相互作用强度相似的典型大小的随机场,而后者的Imry-Ma机制仅需要无限小的随机场。近来,已经显示出对于稀疏各向异性偶极系统存在第三种机制,其中铁磁相在有限大小的随机场上被有限尺寸的玻璃态畴所扰乱,该有限大小的随机场远小于典型的相互作用强度。使用大规模蒙特卡洛模拟和零温度数值方法,我们证明了这种机制适用于具有竞争性短程铁磁和反铁磁相互作用的无序铁磁体,这表明其在具有竞争性相互作用和潜在自旋玻璃相的铁磁系统中具有普遍性。磁化分布的有限尺寸缩放分析表明,过渡可能是一阶的。

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  • 来源
    《Physical review. B, Condensed Matter And Materals Physics》 |2017年第21期|214414.1-214414.11|共11页
  • 作者单位

    Department of Theoretical Physics, KTH Stockholm, 10691 Stockholm, Sweden,Department of Physics, Ben Gurion University of the Negev, Beer Sheva 84105, Israel;

    Department of Physics and Astronomy, Texas A&M University, College Station, Texas 77843-4242, USA,IQB Information Technologies (1QBit), 458-550 Burrard Street, Vancouver, British Columbia, Canada V6C 2B5,Santa Fe Institute, 1399 Hyde Park Road, Santa Fe, New Mexico 87501, USA;

    Department of Physics, Ben Gurion University of the Negev, Beer Sheva 84105, Israel;

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