We develop a non-Markovian extension to the caldeira-leggett master equation for quantum Brownian motion by using the timescale of the bath as a small parameter around which to perform a perturbative expansion. This framework allows us to deal directly with the time non-locality of the non-Markovian regime. We derive an exact description of the evolution of the reduced density matrix and obtain a new quantum master equa- tion with non-Markovian corrections added perturbatively to the standard Lindblad form. The resulting simulations show new dynamics and a strong deviation from Markovian behaviour. We observe that quantum coherences survive far longer than in the Marko- vian limit. In particular, when the system is fully non-M...
The quantum jump approach allows to characterize the stochastic dynamics associated with an open qua...
1Non-Markovian master equations describe general open quantum systems when no approximation is made....
The theoretical description of quantum dynamics in an intriguing way does not necessarily imply the ...
We develop a non-Markovian extension to the caldeira-leggett master equation for quantum Brownian mo...
We present a perturbative non-Markovian extension to the Caldeira-Leggett 'system + environment mode...
1Caldeira and Leggett (CL), in a seminal paper, derived a master equation describing Markovian quant...
In this paper we demonstrate that two commonly used phenomenological post-Markovian quantum master e...
We construct a large class of non-Markovian master equations that describe the dynamics of open quan...
We analyze the appearance of non-Markovian effects in the dynamics of a bipartite system coupled to ...
The non-Markovian nature of quantum systems recently turned to be a key subject for investigations o...
Non-Markovian dynamics in open quantum systems is characterized by a time-non-locality in the equati...
A nonlinear stochastic Schrödinger equation for pure states describing non-Markovian diffusion of qu...
We derive and solve analytically the non-Markovian master equation for harmonic quantum Brownian mot...
Master equations govern the time evolution of a quantum system interacting with an environment, and ...
We consider the non-Markovian Langevin evolution of a dissipative dynamical system in quantum mechan...
The quantum jump approach allows to characterize the stochastic dynamics associated with an open qua...
1Non-Markovian master equations describe general open quantum systems when no approximation is made....
The theoretical description of quantum dynamics in an intriguing way does not necessarily imply the ...
We develop a non-Markovian extension to the caldeira-leggett master equation for quantum Brownian mo...
We present a perturbative non-Markovian extension to the Caldeira-Leggett 'system + environment mode...
1Caldeira and Leggett (CL), in a seminal paper, derived a master equation describing Markovian quant...
In this paper we demonstrate that two commonly used phenomenological post-Markovian quantum master e...
We construct a large class of non-Markovian master equations that describe the dynamics of open quan...
We analyze the appearance of non-Markovian effects in the dynamics of a bipartite system coupled to ...
The non-Markovian nature of quantum systems recently turned to be a key subject for investigations o...
Non-Markovian dynamics in open quantum systems is characterized by a time-non-locality in the equati...
A nonlinear stochastic Schrödinger equation for pure states describing non-Markovian diffusion of qu...
We derive and solve analytically the non-Markovian master equation for harmonic quantum Brownian mot...
Master equations govern the time evolution of a quantum system interacting with an environment, and ...
We consider the non-Markovian Langevin evolution of a dissipative dynamical system in quantum mechan...
The quantum jump approach allows to characterize the stochastic dynamics associated with an open qua...
1Non-Markovian master equations describe general open quantum systems when no approximation is made....
The theoretical description of quantum dynamics in an intriguing way does not necessarily imply the ...