We study measures on random partitions, arising from condensing stochastic particle systems with stationary product distributions. We provide fairly general conditions on the stationary weights, which lead to Poisson-Dirichlet statistics of the condensed phase in the thermodynamic limit. The Poisson-Dirichlet distribution is known to be the unique reversible measure of split-merge dynamics for random partitions, which we use to characterize the limit law. We also establish concentration results for the macroscopic phase, using size-biased sampling techniques and the equivalence of ensembles to characterize the bulk distribution of the system.Comment: 39 pages, Accepted for publication in Electron. J. Proba
We study the symmetric inclusion process (SIP) in the condensation regime. We obtain an explicit sca...
The aim of the present paper is to provide a preliminary investigation of the thermodynamics of part...
Through a Metropolis-like algorithm with single step computational cost of order one, we build a Mar...
We study measures on random partitions, arising from condensing stochastic particle systems with sta...
We establish a complete picture of condensation in the inclusion process in the thermodynamic limit ...
We study stochastic particle systems with stationary product measures that exhibit a condensation tr...
To fix the background and notations, we shall first briefly revisit some aspects of the following Ew...
International audienceWe revisit the problem of condensation for independent, identically distribute...
We study stochastic particle systems that conserve the particle density and exhibit a condensation t...
Abstract. A family of m independent identically distributed random variables indexed by a chemical p...
This paper examines asymptotic behavior of two types of economic or fi-nancial models with many inte...
The study of random partitions has been an active research area in probability over the last twenty ...
We study condensation in several particle systems related to the inclusion process. For an asymmetr...
The inclusion process is a stochastic lattice gas, which is a natural bosonic counterpart of the wel...
69 pagesWe consider the weakly asymmetric simple exclusion process on the discrete space $\{1,...,n-...
We study the symmetric inclusion process (SIP) in the condensation regime. We obtain an explicit sca...
The aim of the present paper is to provide a preliminary investigation of the thermodynamics of part...
Through a Metropolis-like algorithm with single step computational cost of order one, we build a Mar...
We study measures on random partitions, arising from condensing stochastic particle systems with sta...
We establish a complete picture of condensation in the inclusion process in the thermodynamic limit ...
We study stochastic particle systems with stationary product measures that exhibit a condensation tr...
To fix the background and notations, we shall first briefly revisit some aspects of the following Ew...
International audienceWe revisit the problem of condensation for independent, identically distribute...
We study stochastic particle systems that conserve the particle density and exhibit a condensation t...
Abstract. A family of m independent identically distributed random variables indexed by a chemical p...
This paper examines asymptotic behavior of two types of economic or fi-nancial models with many inte...
The study of random partitions has been an active research area in probability over the last twenty ...
We study condensation in several particle systems related to the inclusion process. For an asymmetr...
The inclusion process is a stochastic lattice gas, which is a natural bosonic counterpart of the wel...
69 pagesWe consider the weakly asymmetric simple exclusion process on the discrete space $\{1,...,n-...
We study the symmetric inclusion process (SIP) in the condensation regime. We obtain an explicit sca...
The aim of the present paper is to provide a preliminary investigation of the thermodynamics of part...
Through a Metropolis-like algorithm with single step computational cost of order one, we build a Mar...