Do diffusive non-Markovian stochastic Schr\"odinger equations (SSEs) for open quantum systems have a physical interpretation? In a recent paper [Phys. Rev. A {\bf 66}, 012108 (2002)] we investigated this question using the orthodox interpretation of quantum mechanics. We found that the solution of a non-Markovian SSE represents the state the system would be in at that time if a measurement was performed on the environment at that time, and yielded a particular result. However, the linking of solutions at different times to make a trajectory is, we concluded, a fiction. In this paper we investigate this question using the modal (hidden variable) interpretation of quantum mechanics. We find that the noise function $z(t)$ appearing in the non-...
A natural non-Markovian extension of the theory of white noise quantum trajectories is presented. In...
The exact dynamics of a system coupled to an environment can be described by an integro-differential...
The exact dynamics of a system coupled to an environment can be described by an integro-differential...
Non-Markovian evolution of an open quantum system can be `unraveled' into pure state trajectories ge...
Starting from a generalization of the quantum trajectory theory [based on the stochastic Schrödinger...
We present a nonlinear stochastic Schroedinger equation for pure states describing non-Markovian dif...
Starting from a generalization of the quantum trajectory theory [based on the stochastic Schrödinger...
Starting from a generalization of the quantum trajectory theory [based on the stochastic Schrödinger...
We show that non-Markovian open quantum systems can exhibit exact Markovian dynamics up to an arbitr...
A natural non-Markovian extension of the theory of white noise quantum trajectories is presented. In...
A natural non-Markovian extension of the theory of white noise quantum trajectories is presented. In...
A natural non-Markovian extension of the theory of white noise quantum trajectories is presented. In...
A natural non-Markovian extension of the theory of white noise quantum trajectories is presented. In...
A nonlinear stochastic Schrödinger equation for pure states describing non-Markovian diffusion of qu...
Stochastic Schr{\"o}dinger equations for quantum trajectories offer an alternative and sometimes sup...
A natural non-Markovian extension of the theory of white noise quantum trajectories is presented. In...
The exact dynamics of a system coupled to an environment can be described by an integro-differential...
The exact dynamics of a system coupled to an environment can be described by an integro-differential...
Non-Markovian evolution of an open quantum system can be `unraveled' into pure state trajectories ge...
Starting from a generalization of the quantum trajectory theory [based on the stochastic Schrödinger...
We present a nonlinear stochastic Schroedinger equation for pure states describing non-Markovian dif...
Starting from a generalization of the quantum trajectory theory [based on the stochastic Schrödinger...
Starting from a generalization of the quantum trajectory theory [based on the stochastic Schrödinger...
We show that non-Markovian open quantum systems can exhibit exact Markovian dynamics up to an arbitr...
A natural non-Markovian extension of the theory of white noise quantum trajectories is presented. In...
A natural non-Markovian extension of the theory of white noise quantum trajectories is presented. In...
A natural non-Markovian extension of the theory of white noise quantum trajectories is presented. In...
A natural non-Markovian extension of the theory of white noise quantum trajectories is presented. In...
A nonlinear stochastic Schrödinger equation for pure states describing non-Markovian diffusion of qu...
Stochastic Schr{\"o}dinger equations for quantum trajectories offer an alternative and sometimes sup...
A natural non-Markovian extension of the theory of white noise quantum trajectories is presented. In...
The exact dynamics of a system coupled to an environment can be described by an integro-differential...
The exact dynamics of a system coupled to an environment can be described by an integro-differential...