Self-interacting walks and polygons on the simple cubic lattice undergo a collapse transition at the theta-point. We consider self-avoiding walks and polygons with an additional interaction between pairs of vertices which are unit distance apart but not joined by an edge of the walk or polygon. We prove that these walks and polygons have the same limiting free energy if the interactions between nearest-neighbour vertices are repulsive. The attractive interaction regime is investigated using Monte Carlo methods, and we find evidence that the limiting free energies are also equal here. In particular, this means that these models have the same theta-point, in the asymptotic limit. The dimensions and shapes of walk...
Self-avoiding walks on a d-dimensional hypercubic lattice are used to model a polymer interacting wi...
We consider a self-avoiding walk confined between two parallel planes (or lines), with an energy ter...
We consider a self-avoiding walk confined between two parallel planes (or lines), with an energy ...
We consider self-avoiding walks on the simple cubic lattice in which neighboring pairs of vertice...
Abstract. We present analyses of substantially extended series for both interacting self-avoiding wa...
In this paper we perform transfer matrix calculations to study the two-dimensional problem of orient...
Motivated by recent claims of a proof that the length scale exponent for the end-to-end distance sca...
We perform a Monte Carlo simulation of two-dimensional N-step interacting self-avoiding walks at the...
We study a generalized interacting self-avoiding walk (ISAW) model with nearest- and next nearest-ne...
We perform a Monte Carlo simulation of two-dimensional N-step interacting self-avoiding walks at the...
We study the interacting self-avoiding trail (ISAT) model on a Bethe lattice of general coordination...
Abstract. Various interacting lattice path models of polymer collapse in two dimensions demonstrate ...
A polymer in a confined geometry may be modeled by a self-avoiding walk or a self-avoiding polygon c...
International audienceIn this paper, we investigate a model for a 1 + 1 dimensional self-interacting...
We investigate neighbor-avoiding walks on the simple cubic lattice in the presence of an adsorbing s...
Self-avoiding walks on a d-dimensional hypercubic lattice are used to model a polymer interacting wi...
We consider a self-avoiding walk confined between two parallel planes (or lines), with an energy ter...
We consider a self-avoiding walk confined between two parallel planes (or lines), with an energy ...
We consider self-avoiding walks on the simple cubic lattice in which neighboring pairs of vertice...
Abstract. We present analyses of substantially extended series for both interacting self-avoiding wa...
In this paper we perform transfer matrix calculations to study the two-dimensional problem of orient...
Motivated by recent claims of a proof that the length scale exponent for the end-to-end distance sca...
We perform a Monte Carlo simulation of two-dimensional N-step interacting self-avoiding walks at the...
We study a generalized interacting self-avoiding walk (ISAW) model with nearest- and next nearest-ne...
We perform a Monte Carlo simulation of two-dimensional N-step interacting self-avoiding walks at the...
We study the interacting self-avoiding trail (ISAT) model on a Bethe lattice of general coordination...
Abstract. Various interacting lattice path models of polymer collapse in two dimensions demonstrate ...
A polymer in a confined geometry may be modeled by a self-avoiding walk or a self-avoiding polygon c...
International audienceIn this paper, we investigate a model for a 1 + 1 dimensional self-interacting...
We investigate neighbor-avoiding walks on the simple cubic lattice in the presence of an adsorbing s...
Self-avoiding walks on a d-dimensional hypercubic lattice are used to model a polymer interacting wi...
We consider a self-avoiding walk confined between two parallel planes (or lines), with an energy ter...
We consider a self-avoiding walk confined between two parallel planes (or lines), with an energy ...