We analyze the performance of a Brownian ratchet in the presence of geometrical constraints. A two-state model that describes the kinetics of molecular motors is used to characterize the energetic cost when the motor proceeds under confinement, in the presence of an external force. We show that the presence of geometrical constraints has a strong effect on the performance of the motor. In particular, we show that it is possible to enhance the ratchet performance by a proper tuning of the parameters characterizing the environment. These results open the possibility of engineering entropically-optimized transport devices
We study the collective dynamics of Brownian motors moving on a one-dimensional track when an extern...
A molecular motor is made of either a single macromolecule or a macro-molecular complex. Just like t...
Ratchets are devices that operate away from thermal equilibrium and can rec-tify zero-mean perturbat...
We analyze the dynamics of Brownian ratchets in a confined environment. The motion of the particles ...
We present a model for a feedback-controlled ratchet consisting of a Brownian particle and a moving,...
In recent literature there has been a lot of interest in the phenomena of noise induced transport in...
The muscle contraction, operation of ATP synthase, maintaining the shape of a cell are believed to b...
The transport properties of Brownian motors have attracted many attention in the last years. The vas...
We consider mechanisms of directed transport in a ratchet model comprising, besides the external fre...
Molecular motors play a vital role in the transport of material within the cell. A family of motors ...
The directed transport properties of feedback coupled Brownian ratchets under the effect of external...
A method of calculating velocity, efficiency as well as coefficient of performance of the refrigerat...
Ratchets allow for directed transport without net bias. In this context, 'no net bias' means that ne...
The efficiency of different types of Brownian motors is calculated analytically and numerically. We ...
The noise-induced transport due to spatial symmetry-breaking is a key mechanism for the generation o...
We study the collective dynamics of Brownian motors moving on a one-dimensional track when an extern...
A molecular motor is made of either a single macromolecule or a macro-molecular complex. Just like t...
Ratchets are devices that operate away from thermal equilibrium and can rec-tify zero-mean perturbat...
We analyze the dynamics of Brownian ratchets in a confined environment. The motion of the particles ...
We present a model for a feedback-controlled ratchet consisting of a Brownian particle and a moving,...
In recent literature there has been a lot of interest in the phenomena of noise induced transport in...
The muscle contraction, operation of ATP synthase, maintaining the shape of a cell are believed to b...
The transport properties of Brownian motors have attracted many attention in the last years. The vas...
We consider mechanisms of directed transport in a ratchet model comprising, besides the external fre...
Molecular motors play a vital role in the transport of material within the cell. A family of motors ...
The directed transport properties of feedback coupled Brownian ratchets under the effect of external...
A method of calculating velocity, efficiency as well as coefficient of performance of the refrigerat...
Ratchets allow for directed transport without net bias. In this context, 'no net bias' means that ne...
The efficiency of different types of Brownian motors is calculated analytically and numerically. We ...
The noise-induced transport due to spatial symmetry-breaking is a key mechanism for the generation o...
We study the collective dynamics of Brownian motors moving on a one-dimensional track when an extern...
A molecular motor is made of either a single macromolecule or a macro-molecular complex. Just like t...
Ratchets are devices that operate away from thermal equilibrium and can rec-tify zero-mean perturbat...