A correlation between two noise processes driving the thermally activated particles in a symmetric triple-well potential may cause a symmetry breaking and a difference in relative stability of the two side wells with respect to the middle one. This leads to an asymmetric localization of population and splitting of Kramers' rate of escape from the middle well, ensuring a preferential distribution of the products in the course of a parallel reaction
Fluctuational escape from a multiwell potential is shown to display new features, as compared to the...
Kramers ’ exit problem is concerned with noise activated escape from a po-tential well. In case the ...
We demonstrate that the classical Kramers' escape problem can be extended to describe a bistable sys...
We consider the escape of particles located in the middle well of a symmetric triple well potential ...
The calculation of rate coefficients is a discipline of nonlinear science of importance to much of p...
Department of Physical Chemistry, Indian Association for the Cultivation of Science, Jadavpur, Kolka...
Activated escape is investigated for systems that are driven by noise whose power spectrum peaks at ...
Noise-induced escape from the metastable part of a potential is considered on time scales preceding ...
We review the problem of the noise activated escape from a metastable state in the presence of non-G...
Activated escape is investigated for systems that are driven by noise whose power spectrum peaks at ...
Escape from a metastable potential is considered on time-scales less than are needed for the creatio...
Noise-induced escape from the metastable part of a potential is considered on time scales preceding ...
We present a study of the escape time from a metastable state of an overdamped Brownian particle in ...
A nontrivial phenomenon in stochastic zero-dimensional systems, namely, the symmetry breakdown of st...
Double-well potentials are widely used to model phenomena in physics and chemistry. The system is as...
Fluctuational escape from a multiwell potential is shown to display new features, as compared to the...
Kramers ’ exit problem is concerned with noise activated escape from a po-tential well. In case the ...
We demonstrate that the classical Kramers' escape problem can be extended to describe a bistable sys...
We consider the escape of particles located in the middle well of a symmetric triple well potential ...
The calculation of rate coefficients is a discipline of nonlinear science of importance to much of p...
Department of Physical Chemistry, Indian Association for the Cultivation of Science, Jadavpur, Kolka...
Activated escape is investigated for systems that are driven by noise whose power spectrum peaks at ...
Noise-induced escape from the metastable part of a potential is considered on time scales preceding ...
We review the problem of the noise activated escape from a metastable state in the presence of non-G...
Activated escape is investigated for systems that are driven by noise whose power spectrum peaks at ...
Escape from a metastable potential is considered on time-scales less than are needed for the creatio...
Noise-induced escape from the metastable part of a potential is considered on time scales preceding ...
We present a study of the escape time from a metastable state of an overdamped Brownian particle in ...
A nontrivial phenomenon in stochastic zero-dimensional systems, namely, the symmetry breakdown of st...
Double-well potentials are widely used to model phenomena in physics and chemistry. The system is as...
Fluctuational escape from a multiwell potential is shown to display new features, as compared to the...
Kramers ’ exit problem is concerned with noise activated escape from a po-tential well. In case the ...
We demonstrate that the classical Kramers' escape problem can be extended to describe a bistable sys...