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Zero-temperature Monte Carlo study of the noncoplanar phase of the classical bilinear-biquadratic Heisenberg model on the triangular lattice

机译:三角晶格上经典双线性-双二次海森堡模型的非共面相的零温蒙特卡罗研究

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摘要

We investigate the ground-state properties of the highly degenerate noncoplanar phase of the classical bilinear-biquadratic Heisenberg model on the triangular lattice with Monte Carlo simulations. For that purpose, we introduce an Ising pseudospin representation of the ground states, and we use a simple Metropolis algorithm with local updates, as well as a powerful cluster algorithm. At sizes that can be sampled with local updates, the presence of long-range order is surprisingly combined with an algebraic decay of correlations and the complete disordering of the chirality. It is only thanks to the investigation of unusually large systems (containing ~10~8 spins) with cluster updates that the true asymptotic regime can be reached and that the system can be proven to consist of equivalent (i.e., equally ordered) sublattices. These large-scale simulations also demonstrate that the scalar chirality exhibits long-range order at zero temperature, implying that the system has to undergo a finite-temperature phase transition. Finally, we show that the average distance in the order parameter space, which has the structure of an infinite Cayley tree, remains remarkably small between any pair of points, even in the limit when the real space distance between them tends to infinity.
机译:我们用蒙特卡洛模拟研究了三角网格上经典双线性-双二次海森堡模型的高度退化的非共面相的基态性质。为此,我们引入了基态的Ising伪旋转表示,并使用了具有本地更新的简单Metropolis算法以及强大的聚类算法。在可以通过局部更新采样的大小上,长距离阶的存在令人惊讶地与相关性的代数衰减和手性的完全无序结合在一起。只有通过对具有簇更新的异常大系统(包含〜10〜8个自旋)的研究,才能达到真正的渐近状态,并且可以证明该系统由等价(即等序)的子晶格组成。这些大规模仿真还表明,标量手性在零温度下表现出远距离有序,这意味着系统必须经历有限温度的相变。最后,我们证明了具有无限Cayley树结构的阶数参数空间中的平均距离在任何一对点之间都非常小,即使在它们之间的实际空间距离趋于无穷大的极限中也是如此。

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  • 来源
    《Physical review》 |2013年第9期|094404.1-094404.14|共14页
  • 作者单位

    Institute of Theoretical Physics, Ecole Polytechnique Federate de Lausanne, CH-1015 Lausanne, Switzerland;

    L.D. Landau Institute for Theoretical Physics, Russian Academy of Sciences, 142432 Chernogolovka, Russia;

    Institute for Solid State Physics and Optics, Wigner Research Centre for Physics, Hungarian Academy of Sciences, P.O.Box 49, H-1525 Budapest, Hungary;

    Institute of Theoretical Physics, Ecole Polytechnique Federate de Lausanne, CH-1015 Lausanne, Switzerland;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    classical spin models; antiferromagnetics;

    机译:经典自旋模型;反铁磁;

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