SearcharxivSearch

arXiv subjects

Dominika Jasinska

Publications and source records attributed to Dominika Jasinska.

2 recordsLinked to original sources

A Markov process for an infinite age-structured population

For an infinite system of particles arriving in and departing from a habitat $X$ -- a locally compact Polish space with a positive Radon measure $χ$ -- a Markov process is constructed in an explicit way. Along with its location $x\in X$, each particle is characterized by age $α\geq 0$ -- time since arriving. As the state space one takes the set of marked configurations $\widehatΓ$, equipped with a metric that makes it a complete and separable metric space. The stochastic evolution of the system is described by a Kolmogorov operator $L$, expressed through the measure $χ$ and a departure rate $m(x,α)\geq 0$, and acting on bounded continuous functions $F:\widehatΓ\to \mathds{R}$. For this operator, we pose the martingale problem and show that it has a unique solution, explicitly constructed in the paper. We also prove that the corresponding process has a unique stationary state and is temporarily egrodic if the rate of departure is separated away from zero.

math.PR

Dynamics of an infinite age-structured particle system

The Markov evolution is studied of an infinite age-structured population of migrants arriving in and departing from a continuous habitat $X \subseteq\mathds{R}^d$ -- at random and independently of each other. Each population member is characterized by its age $a\geq 0$ (time of presence in the population) and location $x\in X$. The population states are probability measures on the space of the corresponding marked configurations. The result of the paper is constructing the evolution $μ_0 \to μ_t$ of such states by solving a standard Fokker-Planck equation for this models. We also found a stationary state $μ$ existing if the emigration rate is separated away from zero. It is then shown that $μ_t$ weakly converges to $μ$ as $t\to +\infty$.

math.DS