A two-site spatial coagulation model is considered. Particles of masses m and n at the same site form a new particle of mass m+n at rate mn. Independently, particles jump to the other site at a constant rate. The limit (for increasing particle numbers) of this model is expected to be nondeterministic after the gelation time, namely, one or two giant particles randomly jump between the two sites. Moreover, a new effect of induced gelation is observed—the gelation happening at the site with the larger initial number of monomers immediately induces gelation at the other site. Induced gelation is shown to be of logarithmic order. The limiting behavior of the model is derived rigorously up to the gelation time, while the expected post-gelation b...
Summary. We study a finite-dimensional system of ordinary differential equations de-rived from Smolu...
30 pagesInternational audienceWe consider in this work a model for aggregation, where the coalescing...
Accompanied with the changing of coagulation time, the micro-structure of aerogel can be controlled ...
Two models of coagulation are presented: one, a system of coupled partial differential equations and...
We present a scaling model based on a moving boundary picture to describe heterogeneous gelation dyn...
In this paper, we review recent results concerning stochastic models for coagulation processes and t...
We study a finite-dimensional system of ordinary differential equations derived from Smoluchowski’s...
We report event-driven molecular dynamics simulations of the irreversible gelation of hard ellipsoid...
Smoluchowski's equation for rapid coagulation is used to describe the kinetics of gelation, in which...
The coagulation equations are a model for the dynamics of cluster growth in which clusters can coagu...
(Communicated by the associate editor name) Abstract. In this work we study the stochastic process o...
The exact solution (size distribution ck(t) and moments Mn(t)) of Smoluchowski's coagulation equatio...
We study the solutions of the Smoluchowski coagulation equation with a regularization term which rem...
A computer simulation model is used to study the kinetics of gelation of a low concentration of bifu...
We report a combined experimental and modeling study to investigate the kinetics of the transformati...
Summary. We study a finite-dimensional system of ordinary differential equations de-rived from Smolu...
30 pagesInternational audienceWe consider in this work a model for aggregation, where the coalescing...
Accompanied with the changing of coagulation time, the micro-structure of aerogel can be controlled ...
Two models of coagulation are presented: one, a system of coupled partial differential equations and...
We present a scaling model based on a moving boundary picture to describe heterogeneous gelation dyn...
In this paper, we review recent results concerning stochastic models for coagulation processes and t...
We study a finite-dimensional system of ordinary differential equations derived from Smoluchowski’s...
We report event-driven molecular dynamics simulations of the irreversible gelation of hard ellipsoid...
Smoluchowski's equation for rapid coagulation is used to describe the kinetics of gelation, in which...
The coagulation equations are a model for the dynamics of cluster growth in which clusters can coagu...
(Communicated by the associate editor name) Abstract. In this work we study the stochastic process o...
The exact solution (size distribution ck(t) and moments Mn(t)) of Smoluchowski's coagulation equatio...
We study the solutions of the Smoluchowski coagulation equation with a regularization term which rem...
A computer simulation model is used to study the kinetics of gelation of a low concentration of bifu...
We report a combined experimental and modeling study to investigate the kinetics of the transformati...
Summary. We study a finite-dimensional system of ordinary differential equations de-rived from Smolu...
30 pagesInternational audienceWe consider in this work a model for aggregation, where the coalescing...
Accompanied with the changing of coagulation time, the micro-structure of aerogel can be controlled ...