We link the Brownian non-Gaussian diffusion of a polymer center of mass (CM) to a microscopic cause: the polymerization/depolymerization phenomenon occurring when the polymer is in contact with a monomer chemostat. The anomalous behavior is triggered by the polymer critical point, separating the dilute and the dense phase in the grand canonical ensemble. In the mean-field limit we establish contact with queuing theory and show that the kurtosis of the polymer CM diverges alike a response function when the system becomes critical, a result which holds for general polymer dynamics (Zimm, Rouse, reptation). Both the equilibrium and nonequilibrium behaviors are solved exactly as a reference study for novel stochastic modeling and experimental s...
24 pages, 1 figure; corrected typos, added French abstractInternational audienceWe consider a genera...
Predicting transport properties and hydrodynamic interactions of colloidal particles in complex or p...
PACS. 47.50.+d – Non-Newtonian fluid flows. PACS. 05.40.-a – Fluctuation phenomena, random processes...
We demonstrate that size fluctuations close to polymers critical point originate the non-Gaussian di...
Three-dimensional Monte Carlo simulations provide a striking confirmation to a recent theoretical pr...
We study phenomenological scaling theories of the polymer dynamics in random media, employing the ex...
Self-assembled linear structures like giant cylindrical micelles or discotic molecules in solution s...
The statistical mechanics and scission-recombination mechanism of self-assembling linear micelles ar...
In this paper we discuss a new generalized time-dependent Ginzburg-Landau theory for the numerical c...
Any first course on polymer physics teaches that the dynamics of a tagged monomer of a polymer is an...
This paper provides a mathematically rigorous foundation for self-consistent mean field theory of th...
We use an off-lattice bead-spring model of a self-avoiding polymer chain immersed in a 3-dimensional...
We present an asymptotic and scaling analysis of the long-time self-diffusivity of a Brownian spheri...
We study the asymptotic behavior of a self-interacting one-dimensional Brownian polymer first introd...
We re-examine the problem of the diffusion of a Gaussian chain in a fixed array of obstacles using t...
24 pages, 1 figure; corrected typos, added French abstractInternational audienceWe consider a genera...
Predicting transport properties and hydrodynamic interactions of colloidal particles in complex or p...
PACS. 47.50.+d – Non-Newtonian fluid flows. PACS. 05.40.-a – Fluctuation phenomena, random processes...
We demonstrate that size fluctuations close to polymers critical point originate the non-Gaussian di...
Three-dimensional Monte Carlo simulations provide a striking confirmation to a recent theoretical pr...
We study phenomenological scaling theories of the polymer dynamics in random media, employing the ex...
Self-assembled linear structures like giant cylindrical micelles or discotic molecules in solution s...
The statistical mechanics and scission-recombination mechanism of self-assembling linear micelles ar...
In this paper we discuss a new generalized time-dependent Ginzburg-Landau theory for the numerical c...
Any first course on polymer physics teaches that the dynamics of a tagged monomer of a polymer is an...
This paper provides a mathematically rigorous foundation for self-consistent mean field theory of th...
We use an off-lattice bead-spring model of a self-avoiding polymer chain immersed in a 3-dimensional...
We present an asymptotic and scaling analysis of the long-time self-diffusivity of a Brownian spheri...
We study the asymptotic behavior of a self-interacting one-dimensional Brownian polymer first introd...
We re-examine the problem of the diffusion of a Gaussian chain in a fixed array of obstacles using t...
24 pages, 1 figure; corrected typos, added French abstractInternational audienceWe consider a genera...
Predicting transport properties and hydrodynamic interactions of colloidal particles in complex or p...
PACS. 47.50.+d – Non-Newtonian fluid flows. PACS. 05.40.-a – Fluctuation phenomena, random processes...