The lace expansion is a powerful and flexible method for understanding the critical scaling of several models of interest in probability, statistical mechanics, and combinatorics, above their upper critical dimensions. These models include the self-avoiding walk, lattice trees and lattice animals, percolation, oriented percolation, and the contact process. This volume provides a unified and extensive overview of the lace expansion and its applications to these models. Results include proofs of existence of critical exponents and construction of scaling limits. Often, the scaling limit is described in terms of super-Brownian motion
We consider spread-out models of self-avoiding walk, bond percolation, lattice trees and bond lattic...
This note extends the result of HS02 [2] in order to use the inductive approach to study models with...
In these notes we give an extensive survey of the recent progress for critical spread-out oriented p...
Several superficially simple mathematical models, such as the self-avoiding walk and percolation, ar...
We consider spread-out models of self-avoiding walk, bond percolation, lattice trees and bond lattic...
We consider spread-out models of self-avoiding walk, bond percolation, lattice trees and bond lattic...
We consider spread-out models of self-avoiding walk, bond percolation, lattice trees and bond lattic...
We consider spread-out models of self-avoiding walk, bond percolation, lattice trees and bond lattic...
We consider spread-out models of self-avoiding walk, bond percolation, lattice trees and bond lattic...
Abstract. These lectures describe the lace expansion and its role in proving mean-eld critical behav...
We consider spread-out models of self-avoiding walk, bond percolation, lattice trees and bond lattic...
ABSTRACT. This article discusses our recent proof that above eight dimensions the scaling limit of s...
We consider spread-out models of self-avoiding walk, bond percolation, lattice trees and bond lattic...
We consider spread-out models of self-avoiding walk, bond percolation, lattice trees and bond lattic...
We consider spread-out models of self-avoiding walk, bond percolation, lattice trees and bond lattic...
We consider spread-out models of self-avoiding walk, bond percolation, lattice trees and bond lattic...
This note extends the result of HS02 [2] in order to use the inductive approach to study models with...
In these notes we give an extensive survey of the recent progress for critical spread-out oriented p...
Several superficially simple mathematical models, such as the self-avoiding walk and percolation, ar...
We consider spread-out models of self-avoiding walk, bond percolation, lattice trees and bond lattic...
We consider spread-out models of self-avoiding walk, bond percolation, lattice trees and bond lattic...
We consider spread-out models of self-avoiding walk, bond percolation, lattice trees and bond lattic...
We consider spread-out models of self-avoiding walk, bond percolation, lattice trees and bond lattic...
We consider spread-out models of self-avoiding walk, bond percolation, lattice trees and bond lattic...
Abstract. These lectures describe the lace expansion and its role in proving mean-eld critical behav...
We consider spread-out models of self-avoiding walk, bond percolation, lattice trees and bond lattic...
ABSTRACT. This article discusses our recent proof that above eight dimensions the scaling limit of s...
We consider spread-out models of self-avoiding walk, bond percolation, lattice trees and bond lattic...
We consider spread-out models of self-avoiding walk, bond percolation, lattice trees and bond lattic...
We consider spread-out models of self-avoiding walk, bond percolation, lattice trees and bond lattic...
We consider spread-out models of self-avoiding walk, bond percolation, lattice trees and bond lattic...
This note extends the result of HS02 [2] in order to use the inductive approach to study models with...
In these notes we give an extensive survey of the recent progress for critical spread-out oriented p...