We consider the problem of estimating an arbitrary dynamical parameter of an quantum open system in the input-output formalism. For irreducible Markov processes, we show that in the limit of large times the system-output state can be approximated by a quantum Gaussian state whose mean is proportional to the unknown parameter. This approximation holds locally in a neighbourhood of size t−1/2 in the parameter space, and provides an explicit expression of the asymptotic quantum Fisher information in terms of the Markov generator. Furthermore we show that additive statistics of the counting and homodyne measurements also satisfy local asymptotic normality and we compute the corresponding classical Fisher informations. The mathematical theorems ...
This paper deals with the problem of identifying and estimating dynamical parameters of continuous-t...
We derive new concentration bounds for time averages of measurement outcomes in quantum Markov proce...
In this thesis we study quantum mechanical processes with a Markovian character. We focus on matters...
We consider the problem of estimating an arbitrary dynamical parameter of an open quantum system in ...
We consider the problem of estimating an arbitrary dynamical parameter of an open quantum system in ...
We consider the problem of estimating an arbitrary dynamical parameter of an open quantum system in ...
This paper deals with the problem of identifying and estimating dynamical parameters of continuous-t...
This paper deals with the problem of identifying and estimating dynamical parameters of continuous-t...
We consider the problem of identifying and estimating dynamical parameters of an ergodic quantum Mar...
This paper deals with the problem of identifying and estimating dynamical parameters of continuous-t...
This paper deals with the problem of identifying and estimating dynamical parameters of continuous-t...
Abstract. We consider the problems of identifying and estimating dynamical parameters of an ergodic ...
We consider the problem of identifying and estimating dynamical parameters of an ergodic quantum Mar...
This paper deals with the problem of identifying and estimating dynamical parameters of continuous-t...
We consider the problem of identifying and estimating dynamical parameters of an ergodic quantum Mar...
This paper deals with the problem of identifying and estimating dynamical parameters of continuous-t...
We derive new concentration bounds for time averages of measurement outcomes in quantum Markov proce...
In this thesis we study quantum mechanical processes with a Markovian character. We focus on matters...
We consider the problem of estimating an arbitrary dynamical parameter of an open quantum system in ...
We consider the problem of estimating an arbitrary dynamical parameter of an open quantum system in ...
We consider the problem of estimating an arbitrary dynamical parameter of an open quantum system in ...
This paper deals with the problem of identifying and estimating dynamical parameters of continuous-t...
This paper deals with the problem of identifying and estimating dynamical parameters of continuous-t...
We consider the problem of identifying and estimating dynamical parameters of an ergodic quantum Mar...
This paper deals with the problem of identifying and estimating dynamical parameters of continuous-t...
This paper deals with the problem of identifying and estimating dynamical parameters of continuous-t...
Abstract. We consider the problems of identifying and estimating dynamical parameters of an ergodic ...
We consider the problem of identifying and estimating dynamical parameters of an ergodic quantum Mar...
This paper deals with the problem of identifying and estimating dynamical parameters of continuous-t...
We consider the problem of identifying and estimating dynamical parameters of an ergodic quantum Mar...
This paper deals with the problem of identifying and estimating dynamical parameters of continuous-t...
We derive new concentration bounds for time averages of measurement outcomes in quantum Markov proce...
In this thesis we study quantum mechanical processes with a Markovian character. We focus on matters...