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具有节点位置不同无序度的邻近图上的伊辛铁磁体

Ising Ferromagnets on Proximity Graphs with Varying Disorder of the Node Placement.

作者信息

Schawe Hendrik, Norrenbrock Christoph, Hartmann Alexander K

机构信息

Institut für Physik, Universität Oldenburg, 26111, Oldenburg, Germany.

出版信息

Sci Rep. 2017 Aug 14;7(1):8040. doi: 10.1038/s41598-017-08531-8.

Abstract

We perform Monte Carlo simulations to determine the critical temperatures of Ising Ferromagnets (IFM) on different types of two-dimensional proximity graphs, in which the distribution of their underlying node sets has been changed systematically by means of a parameter σ. This allows us to interpolate between regular grids and proximity graphs based on complete random placement of nodes. Each edge of the planar proximity graphs carries a weighted ferromagnetic coupling. The coupling strengths are determined via the Euclidean distances between coupled spins. The simulations are carried out on graphs with N = 16 to N = 128 nodes utilising the Wolff cluster algorithm and parallel tempering method in a wide temperature range around the critical point to measure the Binder cumulant in order to obtain the critical temperature for different values of σ. Interestingly, the critical temperatures depend partially non-monotonously on the disorder parameter σ, corresponding to a non-monotonous change of the graph structure. For completeness, we further verify using finite-size scaling methods that the IFM on proximity graphs is for all values of the disorder in the same universality class as the IFM on the two-dimensional square lattice.

摘要

我们进行蒙特卡罗模拟,以确定不同类型二维邻近图上伊辛铁磁体(IFM)的临界温度,其中通过参数σ系统地改变了其基础节点集的分布。这使我们能够在基于节点完全随机放置的规则网格和邻近图之间进行插值。平面邻近图的每条边都带有加权铁磁耦合。耦合强度通过耦合自旋之间的欧几里得距离确定。利用沃尔夫团簇算法和并行回火方法,在临界点附近的宽温度范围内,对具有N = 16至N = 128个节点的图进行模拟,以测量宾德尔累积量,从而获得不同σ值下的临界温度。有趣的是,临界温度部分地非单调地依赖于无序参数σ,这对应于图结构的非单调变化。为了完整起见,我们进一步使用有限尺寸标度方法验证,邻近图上的IFM对于所有无序值都与二维正方形晶格上的IFM属于同一普适类。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a20/5556059/f7b4a84f00cc/41598_2017_8531_Fig1_HTML.jpg

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