It is shown that the exact dynamics of a composite quantum system can be represented through a pair of product states which evolve according to a Markovian random jump process. This representation is used to design a general Monte Carlo wave function method that enables the stochastic treatment of the full non-Markovian behavior of open quantum systems. Numerical simulations are carried out which demonstrate that the method is applicable to open systems strongly coupled to a bosonic reservoir, as well as to the interaction with a spin bath. Full details of the simulation algorithms are given, together with an investigation of the dynamics of fluctuations. Several potential generalizations of the method are outlined
Lecture Notes in Mathematics 1881Understanding dissipative dynamics of open quantum systems remains ...
International audienceAn approach, called discretized environment method, is used to treat exactly n...
Lecture Notes in Mathematics 1881Understanding dissipative dynamics of open quantum systems remains ...
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...
Thesis (M.Sc.)-University of KwaZulu-Natal, Westville, 2007.The motivation for this Masters thesis i...
We demonstrate a scaling method for Monte Carlo wave-function simulations used to study the dynamics...
An approach, called discretized environment method, is used to treat exactly non-Markovian...
We introduce an exact open system method to describe the dynamics of quantum systems that are strong...
We develop a real-time full configuration-interaction quantum Monte Carlo approach to model driven-d...
Lecture Notes in Mathematics 1881Understanding dissipative dynamics of open quantum systems remains ...
Lecture Notes in Mathematics 1881Understanding dissipative dynamics of open quantum systems remains ...
International audienceAn approach, called discretized environment method, is used to treat exactly n...
Lecture Notes in Mathematics 1881Understanding dissipative dynamics of open quantum systems remains ...
International audienceAn approach, called discretized environment method, is used to treat exactly n...
Lecture Notes in Mathematics 1881Understanding dissipative dynamics of open quantum systems remains ...
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...
Thesis (M.Sc.)-University of KwaZulu-Natal, Westville, 2007.The motivation for this Masters thesis i...
We demonstrate a scaling method for Monte Carlo wave-function simulations used to study the dynamics...
An approach, called discretized environment method, is used to treat exactly non-Markovian...
We introduce an exact open system method to describe the dynamics of quantum systems that are strong...
We develop a real-time full configuration-interaction quantum Monte Carlo approach to model driven-d...
Lecture Notes in Mathematics 1881Understanding dissipative dynamics of open quantum systems remains ...
Lecture Notes in Mathematics 1881Understanding dissipative dynamics of open quantum systems remains ...
International audienceAn approach, called discretized environment method, is used to treat exactly n...
Lecture Notes in Mathematics 1881Understanding dissipative dynamics of open quantum systems remains ...
International audienceAn approach, called discretized environment method, is used to treat exactly n...
Lecture Notes in Mathematics 1881Understanding dissipative dynamics of open quantum systems remains ...