We study the effect of a large obstacle on the so-called residence time, i.e., the time that a particle performing a symmetric random walk in a rectangular (two-dimensional, 2D) domain needs to cross the strip. We observe complex behavior: We find out that the residence time does not depend monotonically on the geometric properties of the obstacle, such as its width, length, and position. In some cases, due to the presence of the obstacle, the mean residence time is shorter with respect to the one measured for the obstacle-free strip. We explain the residence time behavior by developing a one-dimensional (1D) analog of the 2D model where the role of the obstacle is played by two defect sites having smaller probability to be crossed with res...
We analyse a model of random walk on a two-dimensional lattice and on a strip where the probabilitie...
\u3cp\u3eParticle diffusion is modified by the presence of barriers. In cells macromolecules, behavi...
AbstractThe basic coalescing random walk is a system of interacting particles. These particles start...
The target of our study is to approximate numerically and, in some particular physically relevant ca...
We study an asymmetric simple exclusion process in a strip in the presence of a solid impenetrable ...
The presence of obstacles modifies the way in which particles diffuse. In cells, for instance, it is...
The target of our study is to approximate numerically and, in some particular physically relevant ca...
The effect of space inhomogeneities on a diffusing particle is studied in the framework of the 1D ra...
The dynamics of N particles with hard core exclusion performing biased random walks is studied on a ...
We consider an infinite number of noninteracting lattice random walkers with the goal of determining...
We consider a diffusing particle that randomly switches conformational state. Motivated by various s...
The random walk among Bernoulli obstacles model describes a system in which particles move randomly ...
We show that residence time measures can be used to identify the geometrical and transmission proper...
The first-passage time, defined as the time a random walker takes to reach a target point in a confi...
We consider a Random Walk in Random Environment (RWRE) moving in an i.i.d. random field of obstacles...
We analyse a model of random walk on a two-dimensional lattice and on a strip where the probabilitie...
\u3cp\u3eParticle diffusion is modified by the presence of barriers. In cells macromolecules, behavi...
AbstractThe basic coalescing random walk is a system of interacting particles. These particles start...
The target of our study is to approximate numerically and, in some particular physically relevant ca...
We study an asymmetric simple exclusion process in a strip in the presence of a solid impenetrable ...
The presence of obstacles modifies the way in which particles diffuse. In cells, for instance, it is...
The target of our study is to approximate numerically and, in some particular physically relevant ca...
The effect of space inhomogeneities on a diffusing particle is studied in the framework of the 1D ra...
The dynamics of N particles with hard core exclusion performing biased random walks is studied on a ...
We consider an infinite number of noninteracting lattice random walkers with the goal of determining...
We consider a diffusing particle that randomly switches conformational state. Motivated by various s...
The random walk among Bernoulli obstacles model describes a system in which particles move randomly ...
We show that residence time measures can be used to identify the geometrical and transmission proper...
The first-passage time, defined as the time a random walker takes to reach a target point in a confi...
We consider a Random Walk in Random Environment (RWRE) moving in an i.i.d. random field of obstacles...
We analyse a model of random walk on a two-dimensional lattice and on a strip where the probabilitie...
\u3cp\u3eParticle diffusion is modified by the presence of barriers. In cells macromolecules, behavi...
AbstractThe basic coalescing random walk is a system of interacting particles. These particles start...