A method for the systematic construction of few-body damped harmonic oscillator networks accurately reproducing the effect of general bosonic environments in open quantum systems is presented. Under the sole assumptions of a Gaussian environment and regardless of the system coupled to it, an algorithm to determine the parameters of an equivalent set of interacting damped oscillators obeying a Markovian quantum master equation is introduced. By choosing a suitable coupling to the system and minimizing an appropriate distance between the two-time correlation function of this effective bath and that of the target environment, the error induced in the reduced dynamics of the system is brought under rigorous control. The interactions among the e...
The central challenge for describing the dynamics in open quantum systems is that the Hilbert space ...
The exact dynamics of a system coupled to an environment can be described by an integro-differential...
In this work, we combine an established method for open quantum systems—the time evolving density ma...
We show theoretically how a driven harmonic oscillator can be used as a quantum simulator for non-Ma...
This thesis is concerned with modelling the dynamics of open quantum systems in several different co...
This thesis is concerned with modelling the dynamics of open quantum systems in several different co...
We introduce a new analytical method for studying the open quantum systems problem of a discrete sys...
We introduce a new analytical method for studying the open quantum systems problem of a discrete sys...
Theory of open quantum systems, which studies quantum systems interacting with their environments, h...
Classical non-perturbative simulations of open quantum systems' dynamics face several scalability pr...
Tracing out the environmental degrees of freedom is a necessary procedure when simulating open quant...
It is shown that the exact dynamics of a composite quantum system can be represented through a pair ...
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 central challenge for describing the dynamics in open quantum systems is that the Hilbert space ...
The exact dynamics of a system coupled to an environment can be described by an integro-differential...
In this work, we combine an established method for open quantum systems—the time evolving density ma...
We show theoretically how a driven harmonic oscillator can be used as a quantum simulator for non-Ma...
This thesis is concerned with modelling the dynamics of open quantum systems in several different co...
This thesis is concerned with modelling the dynamics of open quantum systems in several different co...
We introduce a new analytical method for studying the open quantum systems problem of a discrete sys...
We introduce a new analytical method for studying the open quantum systems problem of a discrete sys...
Theory of open quantum systems, which studies quantum systems interacting with their environments, h...
Classical non-perturbative simulations of open quantum systems' dynamics face several scalability pr...
Tracing out the environmental degrees of freedom is a necessary procedure when simulating open quant...
It is shown that the exact dynamics of a composite quantum system can be represented through a pair ...
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 central challenge for describing the dynamics in open quantum systems is that the Hilbert space ...
The exact dynamics of a system coupled to an environment can be described by an integro-differential...
In this work, we combine an established method for open quantum systems—the time evolving density ma...