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Radius of clusters at the percolation threshold: A position space renormalization group study
Authors:Fereydoon Family  Peter J Reynolds
Institution:(1) Center for Polymer Studies and Department of Physics, Boston University, 02215 Boston, Massachusetts, USA;(2) Present address: Department of Physics, Emory University, 30322 Atlanta, GA, USA;(3) Present address: Lawrence Berkeley Laboratory, NRCC, 94720 Berkeley, CA, USA
Abstract:Using a direct position-space renormalization-group approach we study percolation clusters in the limits rarr infin, wheres is the number of occupied elements in a cluster. We do this by assigning a fugacityK per cluster element; asK approaches a critical valueK c , the conjugate variables rarr infin. All exponents along the path (K–K c ) rarr 0 are then related to a corresponding exponent along the paths rarr infin. We calculate the exponent rgr, which describes how the radius of ans-site cluster grows withs at the percolation threshold, in dimensionsd=2, 3. Ind=2 our numerical estimate of rgr=0.52±0.02, obtained from extrapolation and from cell-to-cell transformation procedures, is in agreement with the best known estimates. We combine this result with previous PSRG calculations for the connectedness-length exponent ngr, to make an indirect test of cluster-radius scaling by calculating the scaling function exponent sgr using the relation sgr=rgr/ngr. Our result for sgr is in agreement with direct Monte-Carlo calculations of sgr, and thus supports the cluster-radius scaling assumption. We also calculate rgr ind=3 for both site and bond percolation, using a cell of linear sizeb=2 on the simple-cubic lattice. Although the result of such small-cell calculations are at best only approximate, they nevertheless are consistent with the most recent numerical estimates.Supported in part by grants from ARO and ONR
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