Abstract. We study the boundary effects in invasion percolation (IP) with and without trapping. We find that the presence of boundaries introduces a new set of surface critical exponents, as in the case of standard percolation. Numerical simulations show a fractal dimension, for the region of the percolating cluster near the boundary, remarkably different from the bulk one. In fact, on the surface we find a value of Dsur D 1:65 0:02 (for IP with trapping Dsurtr D 1:59 0:03), compared with the bulk value of Dbul D 1:880:02 (Dbultr D 1:850:02). We find a logarithmic crossover from surface to bulk fractal properties, as one would expect from the finite-size theory of critical systems. The distribution of the quenched variables on the growing...
We study the dynamics of growth at the interface level for two different kinetic models. Both of the...
We study invasion percolation in two dimensions. We compare connectivity properties of the origin's ...
We study the dynamics of growth at the interface level for two different kinetic models. Both of the...
We study the boundary effects in invasion percolation (IP) with and without trapping. We find that t...
We study the boundary effects in invasion percolation (IP) with and without trapping. We find that t...
We study the boundary effects in invasion percolation (IP) with and without trapping. We And that th...
We study the boundary effects in invasion percolation (IP) with and without trapping. We And that th...
We study the boundary effects in invasion percolation (IP) with and without trapping. We find that t...
Boundary effects for invasion percolation are introduced and discussed here. The presence of boundar...
Boundary effects for invasion percolation are introduced and discussed here. The presence of boundar...
Boundary effects for invasion percolation are introduced and discussed here. The presence of boundar...
Boundary effects for invasion percolation are introduced and discussed here. The presence of boundar...
We apply the fixed-scale transformation method, developed for Laplacian fractal growth, to compute t...
We study invasion percolation in two dimensions. We compare connectivity properties of the origin’s ...
We study invasion percolation in two dimensions. We compare connectivity properties of the origin’s ...
We study the dynamics of growth at the interface level for two different kinetic models. Both of the...
We study invasion percolation in two dimensions. We compare connectivity properties of the origin's ...
We study the dynamics of growth at the interface level for two different kinetic models. Both of the...
We study the boundary effects in invasion percolation (IP) with and without trapping. We find that t...
We study the boundary effects in invasion percolation (IP) with and without trapping. We find that t...
We study the boundary effects in invasion percolation (IP) with and without trapping. We And that th...
We study the boundary effects in invasion percolation (IP) with and without trapping. We And that th...
We study the boundary effects in invasion percolation (IP) with and without trapping. We find that t...
Boundary effects for invasion percolation are introduced and discussed here. The presence of boundar...
Boundary effects for invasion percolation are introduced and discussed here. The presence of boundar...
Boundary effects for invasion percolation are introduced and discussed here. The presence of boundar...
Boundary effects for invasion percolation are introduced and discussed here. The presence of boundar...
We apply the fixed-scale transformation method, developed for Laplacian fractal growth, to compute t...
We study invasion percolation in two dimensions. We compare connectivity properties of the origin’s ...
We study invasion percolation in two dimensions. We compare connectivity properties of the origin’s ...
We study the dynamics of growth at the interface level for two different kinetic models. Both of the...
We study invasion percolation in two dimensions. We compare connectivity properties of the origin's ...
We study the dynamics of growth at the interface level for two different kinetic models. Both of the...