We explore the task of optimal quantum channel identification and in particular, the estimation of a general one-parameter quantum process. We derive new characterizations of optimality and apply the results to several examples including the qubit depolarizing channel and the harmonic oscillator damping channel. We also discuss the geometry of the problem and illustrate the usefulness of using entanglement in process estimation
The most important ability of a quantum channel is to preserve the quantum properties of transmitted...
A model of quantum noisy channel with input encoding by a classical random vector is described. An e...
The aim of this thesis is to develop a theoretical framework to study parameter estimation of quantu...
A quantum channel is a mapping which sends density matrices to density matrices. The estimation of q...
We characterize and discuss the identifiability condition for quantum process tomography, as well as...
We present a scheme for optimally estimating a quantum process with one free parameter. We restrict ...
In this review we discuss how channel simulation can be used to simplify the most general protocols ...
The efficiency of parameter estimation of quantum channels is studied in this paper. We introduce th...
We investigate the estimation of the quantum channel parameter for a two-qubit system with...
Gaussian states are of increasing interest in the estimation of physical parameters because they are...
The rapid advance of quantum information technology requires precise control and manipulation of qua...
We investigate the optimal estimation of a quantum process that can possibly consist of multiple tim...
We determine the minimal experimental resources that ensure a unique solution in the estimation of t...
A model of quantum noisy channel with input encoding by a classical random vector is described. An e...
We present the experimental realization of the optimal estimation protocol for a Pauli noisy channel...
The most important ability of a quantum channel is to preserve the quantum properties of transmitted...
A model of quantum noisy channel with input encoding by a classical random vector is described. An e...
The aim of this thesis is to develop a theoretical framework to study parameter estimation of quantu...
A quantum channel is a mapping which sends density matrices to density matrices. The estimation of q...
We characterize and discuss the identifiability condition for quantum process tomography, as well as...
We present a scheme for optimally estimating a quantum process with one free parameter. We restrict ...
In this review we discuss how channel simulation can be used to simplify the most general protocols ...
The efficiency of parameter estimation of quantum channels is studied in this paper. We introduce th...
We investigate the estimation of the quantum channel parameter for a two-qubit system with...
Gaussian states are of increasing interest in the estimation of physical parameters because they are...
The rapid advance of quantum information technology requires precise control and manipulation of qua...
We investigate the optimal estimation of a quantum process that can possibly consist of multiple tim...
We determine the minimal experimental resources that ensure a unique solution in the estimation of t...
A model of quantum noisy channel with input encoding by a classical random vector is described. An e...
We present the experimental realization of the optimal estimation protocol for a Pauli noisy channel...
The most important ability of a quantum channel is to preserve the quantum properties of transmitted...
A model of quantum noisy channel with input encoding by a classical random vector is described. An e...
The aim of this thesis is to develop a theoretical framework to study parameter estimation of quantu...