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Testing boundary conditions efficiency in simulations of long-range interacting magnetic models

机译:在远程相互作用磁模型的仿真中测试边界条件效率

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Periodic boundary conditions have no unique implementation in magnetic systems where all spins interact with each other through a power law decaying interaction of the form 1/r(alpha), r being the distance between spins. In this work we present a comparative study of the finite size effects oberved in numerical simulations by using first image and infinite image periodic boundary conditions in one- and two-dimensional spin systems with those interactions, including the ferromagnetic, anti-ferromagnetic and competitive interaction cases. Our results show no significative differences between the finite size effects produced by both boundary conditions when the low temperature phase has zero global magnetization, and it depends on the ratio alpha/d for systems with a low temperature ferromagnetic phase. In the last case the first image convention gives more stronger finite size effects than the other when the system enters into the classical regime alpha/d less than or equal to 3/2.
机译:周期边界条件在磁系统中没有唯一的实现方式,在该系统中,所有自旋都通过幂定律衰减相互作用,其形式为1 /rα,其中r是自旋之间的距离。在这项工作中,我们对一维和二维自旋系统中的第一图像和无限图像周期性边界条件进行了数值模拟,并利用这些相互作用,包括铁磁,反铁磁和竞争性相互作用,对有限尺寸效应进行了比较研究。案件。我们的结果表明,当低温相的整体磁化强度为零时,两个边界条件所产生的有限尺寸效应之间没有显着差异,而这取决于具有低温铁磁相的系统的alpha / d比。在最后一种情况下,当系统进入经典方案alpha / d小于或等于3/2时,第一个图像约定会比另一个图像约定提供更大的有限尺寸效果。

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