We introduce an exact open system method to describe the dynamics of quantum systems that are strongly coupled to specific types of environments comprising of spins, such as central spin systems. Our theory is similar to the established non-Markovian quantum state diffusion theory, but for a spin bath instead of a Gaussian bath. The method allows us to represent the time-evolved reduced state of the system as an ensemble average of stochastically evolving pure states. We present a comprehensive theory for arbitrary linear spin environments at both zero and finite temperatures. Furthermore, we introduce a hierarchical expansion method that enables the numerical computation of the time evolution of the stochastic pure states, facilitating a n...
International audienceAn approach, called discretized environment method, is used to treat exactly n...
We introduce a new analytical method for studying the open quantum systems problem of a discrete sys...
Following on from our recent work, we investigate a stochastic approach to non-equilibrium quantum s...
We introduce an exact open system method to describe the dynamics of quantum systems that are strong...
We develop a systematic and efficient approach for numerically solving the non-Markovian quantum sta...
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...
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...
We present a nonlinear stochastic Schroedinger equation for pure states describing non-Markovian dif...
A nonlinear stochastic Schrödinger equation for pure states describing non-Markovian diffusion of qu...
In order to model realistic quantum devices it is necessary to simulate quantum systems strongly cou...
An approach, called discretized environment method, is used to treat exactly non-Markovian...
It is shown that the exact dynamics of a composite quantum system can be represented through a pair ...
International audienceAn approach, called discretized environment method, is used to treat exactly n...
International audienceAn approach, called discretized environment method, is used to treat exactly n...
We introduce a new analytical method for studying the open quantum systems problem of a discrete sys...
Following on from our recent work, we investigate a stochastic approach to non-equilibrium quantum s...
We introduce an exact open system method to describe the dynamics of quantum systems that are strong...
We develop a systematic and efficient approach for numerically solving the non-Markovian quantum sta...
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...
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...
We present a nonlinear stochastic Schroedinger equation for pure states describing non-Markovian dif...
A nonlinear stochastic Schrödinger equation for pure states describing non-Markovian diffusion of qu...
In order to model realistic quantum devices it is necessary to simulate quantum systems strongly cou...
An approach, called discretized environment method, is used to treat exactly non-Markovian...
It is shown that the exact dynamics of a composite quantum system can be represented through a pair ...
International audienceAn approach, called discretized environment method, is used to treat exactly n...
International audienceAn approach, called discretized environment method, is used to treat exactly n...
We introduce a new analytical method for studying the open quantum systems problem of a discrete sys...
Following on from our recent work, we investigate a stochastic approach to non-equilibrium quantum s...