We give a set of conditions under which a system is thermodynamically self-averaging and show that several lattice models of interacting copolymers satisfy these conditions. We prove this result for a general potential which is linear in the numbers of various types of contacts, and show that this includes two potentials which have previously been used in models of random interacting linear copolymers
This work is composed of three self-contained parts, where the different models of statistical physi...
aTechnion bUniversity of Geneva Abstract. We describe some recent results concerning the statistical...
We consider a self-avoiding walk on the simple cubic lattice, as a model of localization of a random...
We give a set of conditions under which a system is thermodynamically self-averaging and show tha...
We discuss self-averaging of thermodynamic properties in some random lattice models. In particula...
We consider a model of random copolymer adsorption in which a self-avoiding walk interacts with a...
We describe some recent results concerning the statistical properties of a self-interacting polymer ...
We consider a directed random walk making either 0 or +1 moves and a Brownian bridge, independent of...
grantor: University of TorontoA self-avoiding walk model of copolymer localisation between...
We explain a unified approach to a study of ballistic phase for a large family of self-interacting r...
grantor: University of TorontoPhase transition and critical behaviour of copolymers intera...
We study the zero-temperature behavior of several simple models for randomly self-interacting polyme...
We explain a unified approach to a study of ballistic phase for a large family of self-interacting r...
Abstract. We consider a directed random walk making either 0 or C1 moves and a Brownian bridge, inde...
45 pages, 3 figuresA copolymer is a chain of repetitive units (monomers) that are almost identical, ...
This work is composed of three self-contained parts, where the different models of statistical physi...
aTechnion bUniversity of Geneva Abstract. We describe some recent results concerning the statistical...
We consider a self-avoiding walk on the simple cubic lattice, as a model of localization of a random...
We give a set of conditions under which a system is thermodynamically self-averaging and show tha...
We discuss self-averaging of thermodynamic properties in some random lattice models. In particula...
We consider a model of random copolymer adsorption in which a self-avoiding walk interacts with a...
We describe some recent results concerning the statistical properties of a self-interacting polymer ...
We consider a directed random walk making either 0 or +1 moves and a Brownian bridge, independent of...
grantor: University of TorontoA self-avoiding walk model of copolymer localisation between...
We explain a unified approach to a study of ballistic phase for a large family of self-interacting r...
grantor: University of TorontoPhase transition and critical behaviour of copolymers intera...
We study the zero-temperature behavior of several simple models for randomly self-interacting polyme...
We explain a unified approach to a study of ballistic phase for a large family of self-interacting r...
Abstract. We consider a directed random walk making either 0 or C1 moves and a Brownian bridge, inde...
45 pages, 3 figuresA copolymer is a chain of repetitive units (monomers) that are almost identical, ...
This work is composed of three self-contained parts, where the different models of statistical physi...
aTechnion bUniversity of Geneva Abstract. We describe some recent results concerning the statistical...
We consider a self-avoiding walk on the simple cubic lattice, as a model of localization of a random...