We investigate the nonlinear dynamics of a mesoscopic driven Duffing oscillator in a quantum regime. In terms of Wigner function, we identify the nature of state near the bifurcation point, and analyze the transient process which reveals two distinct stages of quenching and escape. The rate process in the escape stage allows us to extract the transition rate, which displays perfect scaling behavior with the driving distance to the bifurcation point. We numerically determine the scaling exponent, compare it with existing result, and propose open questions to be resolved
We investigate the quantum dynamics of three different configurations of nonlinear cavity systems. T...
In this tutorial paper we present a comprehensive review of the escape dynamics from quantum metasta...
Synchronization is a universal phenomenon that is important both in fundamental studies and in techn...
Motivated by recent experimental progress to readout quantum bits implemented in superconducting cir...
Except for the universe, all quantum systems are open, and according to quantum state diffusion theo...
We consider the quantum model of a driven anharmonic oscillator, in the presence of dissipation, and...
We investigate the quantum dynamics of many-body systems subject to local (i.e., restricted to a lim...
We review our results on a mathematical dynamical theory for observables for open manybody quantum n...
Classical dynamical systems close to a critical point are known to act as efficient sensors due to a...
In this tutorial paper we present a comprehensive review of the escape dynamics from quantum metasta...
We show that the nonlinear response of a driven circuit quantum electrodynamics setup displays antir...
We report on experimental and theoretical studies of the fluctuation-induced escape time from a meta...
We consider a driven damped anharmonic oscillator that classically leads to a bistable steady state ...
Nonthermal dynamical critical behavior can arise in isolated quantum systems brought out of equilibr...
We develop a quantum dynamical field theory for studying phase transitions in driven open systems co...
We investigate the quantum dynamics of three different configurations of nonlinear cavity systems. T...
In this tutorial paper we present a comprehensive review of the escape dynamics from quantum metasta...
Synchronization is a universal phenomenon that is important both in fundamental studies and in techn...
Motivated by recent experimental progress to readout quantum bits implemented in superconducting cir...
Except for the universe, all quantum systems are open, and according to quantum state diffusion theo...
We consider the quantum model of a driven anharmonic oscillator, in the presence of dissipation, and...
We investigate the quantum dynamics of many-body systems subject to local (i.e., restricted to a lim...
We review our results on a mathematical dynamical theory for observables for open manybody quantum n...
Classical dynamical systems close to a critical point are known to act as efficient sensors due to a...
In this tutorial paper we present a comprehensive review of the escape dynamics from quantum metasta...
We show that the nonlinear response of a driven circuit quantum electrodynamics setup displays antir...
We report on experimental and theoretical studies of the fluctuation-induced escape time from a meta...
We consider a driven damped anharmonic oscillator that classically leads to a bistable steady state ...
Nonthermal dynamical critical behavior can arise in isolated quantum systems brought out of equilibr...
We develop a quantum dynamical field theory for studying phase transitions in driven open systems co...
We investigate the quantum dynamics of three different configurations of nonlinear cavity systems. T...
In this tutorial paper we present a comprehensive review of the escape dynamics from quantum metasta...
Synchronization is a universal phenomenon that is important both in fundamental studies and in techn...