We give an overview over recent studies on the model of Active Brownian Motion (ABM) coupled to reservoirs providing free energy which may be converted into kinetic energy of motion. First, we present an introduction to a general concept of active Brownian particles which are capable to take up energy from the source and transform part of it in order to perform various activities. In the second part of our presentation we consider applications of ABM to ratchet systems with different forms of differentiable potentials. Both analytical and numerical evaluations are discussed for three cases of sinusoidal, staircaselike and Mateos ratchet potentials, also with the additional loads modelled by tilted potential structure. In addition, st...
© 2021 American Chemical Society.Living cells are known to generate non-Gaussian active fluctuations...
We analyze the dynamics of Brownian ratchets in a confined environment. The motion of the particles ...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).We study self-propelled moti...
We give an overview over recent studies on the model of Active Brownian Motion (ABM) coupled to rese...
Stochastic processes are present in virtually any field of science. Actually, in general determinist...
05.40.-a Fluctuation phenomena, random processes, noise, Brownian motion, 05.45.-a Nonlinear dynamic...
A currently intensively researched area of physics is Active Brownian ratchets, devi- ces capable of...
The main aim of this work is to explore the possibility of modeling the biological energy support m...
The main aim of this work is to explore the possibility of modeling the biological energy support me...
The muscle contraction, operation of ATP synthase, maintaining the shape of a cell are believed to b...
Abstract. We consider a Brownian ratchet model where the particle on the ratchet is coupled to a car...
We consider Brownian particles with the ability to take up energy from the environment, to store it ...
The motion of particle pairs in a Brownian ratchet device is studied using Langevin simulations. A L...
We investigate the dynamics of Brownian particles which are active in the sense that they take up en...
Illustrating the development of Brownian ratchets, from their foundations, to their role in the desc...
© 2021 American Chemical Society.Living cells are known to generate non-Gaussian active fluctuations...
We analyze the dynamics of Brownian ratchets in a confined environment. The motion of the particles ...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).We study self-propelled moti...
We give an overview over recent studies on the model of Active Brownian Motion (ABM) coupled to rese...
Stochastic processes are present in virtually any field of science. Actually, in general determinist...
05.40.-a Fluctuation phenomena, random processes, noise, Brownian motion, 05.45.-a Nonlinear dynamic...
A currently intensively researched area of physics is Active Brownian ratchets, devi- ces capable of...
The main aim of this work is to explore the possibility of modeling the biological energy support m...
The main aim of this work is to explore the possibility of modeling the biological energy support me...
The muscle contraction, operation of ATP synthase, maintaining the shape of a cell are believed to b...
Abstract. We consider a Brownian ratchet model where the particle on the ratchet is coupled to a car...
We consider Brownian particles with the ability to take up energy from the environment, to store it ...
The motion of particle pairs in a Brownian ratchet device is studied using Langevin simulations. A L...
We investigate the dynamics of Brownian particles which are active in the sense that they take up en...
Illustrating the development of Brownian ratchets, from their foundations, to their role in the desc...
© 2021 American Chemical Society.Living cells are known to generate non-Gaussian active fluctuations...
We analyze the dynamics of Brownian ratchets in a confined environment. The motion of the particles ...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).We study self-propelled moti...