In this paper we describe in detail and generalize a method for quantum process tomography that was presented by Bendersky [Phys. Rev. Lett. 100, 190403 (2008)]. The method enables the efficient estimation of any element of the χ matrix of a quantum process. Such elements are estimated as averages over experimental outcomes with a precision that is fixed by the number of repetitions of the experiment. Resources required implementing it scale polynomially with the number of qubits of the system. The estimation of all diagonal elements of the χ matrix can be efficiently done without any ancillary qubits. In turn, the estimation of all the off-diagonal elements requires an extra clean qubit. The key ideas of the method, which is based on effic...
The temporal evolution of a quantum system can be characterized by quantum process tomography, a com...
Full characterization of quantum states and processes is a fundamental requirement for verification ...
Full characterization of quantum states and processes is a fundamental requirement for verification ...
We present a method for quantum state tomography that enables the efficient estimation, with fixed p...
We propose and evaluate experimentally an approach to quantum process tomography that completely rem...
We propose and evaluate experimentally an approach to quantum process tomography that completely rem...
International audienceQuantum process tomography (QPT) methods aim at identifying, i.e., estimating,...
International audienceQuantum process tomography (QPT) methods aim at identifying, i.e., estimating,...
International audienceQuantum process tomography (QPT) methods aim at identifying, i.e., estimating,...
International audienceQuantum process tomography (QPT) methods aim at identifying, i.e., estimating,...
International audienceQuantum process tomography (QPT) methods aim at identifying, i.e., estimating,...
International audienceQuantum process tomography (QPT) methods aim at identifying, i.e., estimating,...
International audienceQuantum process tomography (QPT) methods aim at identifying, i.e., estimating,...
Alternatively to the full reconstruction of an unknown quantum process, the so-called selective and ...
Identifying an unknown unitary quantum process is a fundamental task in the development of quantum t...
The temporal evolution of a quantum system can be characterized by quantum process tomography, a com...
Full characterization of quantum states and processes is a fundamental requirement for verification ...
Full characterization of quantum states and processes is a fundamental requirement for verification ...
We present a method for quantum state tomography that enables the efficient estimation, with fixed p...
We propose and evaluate experimentally an approach to quantum process tomography that completely rem...
We propose and evaluate experimentally an approach to quantum process tomography that completely rem...
International audienceQuantum process tomography (QPT) methods aim at identifying, i.e., estimating,...
International audienceQuantum process tomography (QPT) methods aim at identifying, i.e., estimating,...
International audienceQuantum process tomography (QPT) methods aim at identifying, i.e., estimating,...
International audienceQuantum process tomography (QPT) methods aim at identifying, i.e., estimating,...
International audienceQuantum process tomography (QPT) methods aim at identifying, i.e., estimating,...
International audienceQuantum process tomography (QPT) methods aim at identifying, i.e., estimating,...
International audienceQuantum process tomography (QPT) methods aim at identifying, i.e., estimating,...
Alternatively to the full reconstruction of an unknown quantum process, the so-called selective and ...
Identifying an unknown unitary quantum process is a fundamental task in the development of quantum t...
The temporal evolution of a quantum system can be characterized by quantum process tomography, a com...
Full characterization of quantum states and processes is a fundamental requirement for verification ...
Full characterization of quantum states and processes is a fundamental requirement for verification ...