A lattice tree is a finite connected set of lattice bonds containing no cycles. Lattice trees are interesting combinatorial objects and an important model for branched polymers in polymer chemistry and physics. In addition they provide an interesting example of critical phenomena in statistical physics with similar properties to models such as self-avoiding walks and percolation. We use the lace expansion to prove asymptotic formulae for the Fourier transform of the r-point functions (quantities which count critically weighted trees containing r fixed points) for a spread-out model of lattice" trees in ℤ[sup d] for d > 8. Our results therefore provide additional evidence in support of the critical dimension d[sub c] = 8. The spread out mode...
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 give a su¿cient condition for tightness for convergence of rescaled critical spatial structures t...
We give a sufficient condition for tightness for convergence of rescaled critical spatial structures...
ABSTRACT. This article discusses our recent proof that above eight dimensions the scaling limit of s...
We give a sufficient condition for tightness for convergence of rescaled critical spatial structures...
We study lattice trees and lattice animals in high dimensions. Lattice trees and animals are intere...
We study lattice trees and lattice animals in high dimensions. Lattice trees and animals are intere...
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...
The lace expansion is a powerful and flexible method for understanding the critical scaling of sever...
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 give a su¿cient condition for tightness for convergence of rescaled critical spatial structures t...
We give a sufficient condition for tightness for convergence of rescaled critical spatial structures...
ABSTRACT. This article discusses our recent proof that above eight dimensions the scaling limit of s...
We give a sufficient condition for tightness for convergence of rescaled critical spatial structures...
We study lattice trees and lattice animals in high dimensions. Lattice trees and animals are intere...
We study lattice trees and lattice animals in high dimensions. Lattice trees and animals are intere...
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...
The lace expansion is a powerful and flexible method for understanding the critical scaling of sever...
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...