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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Breakdown of universality in directed spiral percolation
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Breakdown of universality in directed spiral percolation

机译:有向螺旋渗透的普遍性分解

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摘要

Directed spiral percolation (DSP), percolation under both directional and rotational constraints, is studied on the triangular lattice in two dimensions (2D). The results are compared with that of the 2D square lattice. Clusters generated in this model are generally rarefied and have chiral dangling ends on both the square and triangular lattices. It is found that the clusters are more compact and less anisotropic on the triangular lattice than on the square lattice. The elongation of the clusters is in a different direction than the imposed directional constraint on both the lattices. The values of some of the critical exponents and fractal dimension are found considerably different on the two lattices. The DSP model then exhibits a breakdown of universality in 2D between the square and triangular lattices. The values of the critical exponents obtained for the triangular lattice are not only different from that of the square lattice but also different form other percolation models.
机译:在二维和二维三角形网格上研究了定向螺旋渗滤(DSP),即在方向和旋转约束下的渗滤。将结果与2D方格的结果进行比较。在此模型中生成的簇通常很少见,并且在正方形和三角形晶格上都具有手性悬挂端。已发现,与方形晶格相比,三角形晶格上的团簇更紧密,各向异性更小。簇的伸长方向与两个晶格上施加的方向约束的方向不同。发现某些临界指数和分形维的值在两个晶格上有很大不同。然后,DSP模型展现出正方形和三角形晶格之间2D通用性的细分。对于三角晶格获得的临界指数值不仅与正方形晶格不同,而且与其他渗流模型也不同。

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