arXiv · cond-mat/9904177
Probability Distribution of the Shortest Path on the Percolation Cluster, its Backbone and Skeleton
Abstract
We consider the mean distribution functions Phi(r|l), Phi(B)(r|l), and Phi(S)(r|l), giving the probability that two sites on the incipient percolation cluster, on its backbone and on its skeleton, respectively, connected by a shortest path of length l are separated by an Euclidean distance r. Following a scaling argument due to de Gennes for self-avoiding walks, we derive analytical expressions for the exponents g1=df+dmin-d and g1B=g1S-3dmin-d, which determine the scaling behavior of the distribution functions in the limit x=r/l^(nu) much less than 1, i.e., Phi(r|l) proportional to l^(-(nu)d)x^(g1), Phi(B)(r|l) proportional to l^(-(nu)d)x^(g1B), and Phi(S)(r|l) proportional to l^(-(nu)d)x^(g1S), with nu=1/dmin, where df and dmin are the fractal dimensions of the percolation cluster and the shortest path, respectively. The theoretical predictions for g1, g1B, and g1S are in very good agreement with our numerical results.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Markus Porto, Shlomo Havlin, H. Eduardo Roman, Armin Bunde. 1999-04-13. Probability Distribution of the Shortest Path on the Percolation Cluster, its Backbone and Skeleton. https://doi.org/10.1103/physreve.58.r5205
Cite the original work for its findings. Save a collection to share your selection of sources.