We study the escape rate of a particle in a metastable potential in presence of a dissipative bath coupled to the momentum of the particle. Using the semiclassical bounce technique, we find that this rate is exponentially enhanced. In particular, the influence of momentum dissipation depends on the slope of the barrier that the particle is tunneling through. We investigate also the influence of dissipative baths coupled to the position, and to the momentum of the particle, respectively. In this case the rate exhibits a non-monotonic behavior as a function of the dissipative coupling strengths. Remarkably, even in presence of position dissipation, momentum dissipation can enhance exponentially the escape rate in a large range of the paramete...
In this tutorial paper we present a comprehensive review of the escape dynamics from quantum metasta...
We investigate the escape rate of Brownian particles that move in a cubic metastable poten...
In this tutorial paper we present a comprehensive review of the escape dynamics from quantum metasta...
The calculation of rate coefficients is a discipline of nonlinear science of importance to much of p...
We theoretically investigate the escape rate occurring via quantum tunneling in a system affected by...
Normally, quantum fluctuations enhance the escape from metastable states in the presence of dissipat...
It is generally considered that for a so-called normal system dissipation decreases tunneling rates....
International audienceWe study the noise-driven escape of active Brownian particles (ABPs) and run-a...
In this dissertation we discuss aspects of the transitions between metastable vacua in scalar field ...
Based on a simple microscopic model where the bath is in a non-equilibrium state we study the escape...
We consider tunneling transitions between states separated by an energy barrier in a simple field th...
Time evolution of tunneling phenomena proceeding in thermal medium is studied using a standard model...
Tunneling is a central result of quantum mechanics. It allows quantum particles to enter regions whi...
We consider the tunneling of a wave packet through a potential barrier which is coupled to a noninte...
We investigate numerically the tunneling effect under influence of another particle in a double well...
In this tutorial paper we present a comprehensive review of the escape dynamics from quantum metasta...
We investigate the escape rate of Brownian particles that move in a cubic metastable poten...
In this tutorial paper we present a comprehensive review of the escape dynamics from quantum metasta...
The calculation of rate coefficients is a discipline of nonlinear science of importance to much of p...
We theoretically investigate the escape rate occurring via quantum tunneling in a system affected by...
Normally, quantum fluctuations enhance the escape from metastable states in the presence of dissipat...
It is generally considered that for a so-called normal system dissipation decreases tunneling rates....
International audienceWe study the noise-driven escape of active Brownian particles (ABPs) and run-a...
In this dissertation we discuss aspects of the transitions between metastable vacua in scalar field ...
Based on a simple microscopic model where the bath is in a non-equilibrium state we study the escape...
We consider tunneling transitions between states separated by an energy barrier in a simple field th...
Time evolution of tunneling phenomena proceeding in thermal medium is studied using a standard model...
Tunneling is a central result of quantum mechanics. It allows quantum particles to enter regions whi...
We consider the tunneling of a wave packet through a potential barrier which is coupled to a noninte...
We investigate numerically the tunneling effect under influence of another particle in a double well...
In this tutorial paper we present a comprehensive review of the escape dynamics from quantum metasta...
We investigate the escape rate of Brownian particles that move in a cubic metastable poten...
In this tutorial paper we present a comprehensive review of the escape dynamics from quantum metasta...