Recent developments in integrated photonics technology are opening the way to the fabrication of complex linear optical interferometers. The application of this platform is ubiquitous in quantum information science, from quantum simulation to quantum metrology, including the quest for quantum supremacy via the boson sampling problem. Within these contexts, the capability to learn efficiently the unitary operation of the implemented interferometers becomes a crucial requirement. In this letter we develop a reconstruction algorithm based on a genetic approach, which can be adopted as a tool to characterize an unknown linear optical network. We report an experimental test of the described method by performing the reconstruction of a 7-mode int...
Boson sampling is a computational problem that has recently been proposed as a candidate to obtain a...
We highlight some of our research done in the fields of quantum optical interferometry and quantum s...
The evolution of bosons undergoing arbitrary linear unitary transformations quickly becomes hard to ...
Recent developments in integrated photonics technology are opening the way to the fabrication of com...
Integrated photonics enabled the capability to implement complex interferometers with a large number...
We introduce a genetic algorithm that designs quantum optics experiments for engineering quantum sta...
Photonic platforms represent a promising technology for the realization of several quantum communica...
The evolution of quantum light through linear optical devices can be described by the scattering mat...
Simulating the evolution of non-interacting bosons through a linear transformation acting on the sys...
Entanglement is the quantum resource at the heart of most protocols of quantum Information, allowing...
We introduce a hybrid machine-learning algorithm for designing quantum optics experiments to produce...
Genetic learning algorithms are widely used to control ultrafast optical pulse shapes for photo-indu...
Quantum optics has successfully been used to test fundamental principles in quantum physics and to d...
This thesis reports advances in the theory of design, characterization and simulation of multi-photo...
In this paper, we provide an algorithm and general framework for the simulation of photons passing t...
Boson sampling is a computational problem that has recently been proposed as a candidate to obtain a...
We highlight some of our research done in the fields of quantum optical interferometry and quantum s...
The evolution of bosons undergoing arbitrary linear unitary transformations quickly becomes hard to ...
Recent developments in integrated photonics technology are opening the way to the fabrication of com...
Integrated photonics enabled the capability to implement complex interferometers with a large number...
We introduce a genetic algorithm that designs quantum optics experiments for engineering quantum sta...
Photonic platforms represent a promising technology for the realization of several quantum communica...
The evolution of quantum light through linear optical devices can be described by the scattering mat...
Simulating the evolution of non-interacting bosons through a linear transformation acting on the sys...
Entanglement is the quantum resource at the heart of most protocols of quantum Information, allowing...
We introduce a hybrid machine-learning algorithm for designing quantum optics experiments to produce...
Genetic learning algorithms are widely used to control ultrafast optical pulse shapes for photo-indu...
Quantum optics has successfully been used to test fundamental principles in quantum physics and to d...
This thesis reports advances in the theory of design, characterization and simulation of multi-photo...
In this paper, we provide an algorithm and general framework for the simulation of photons passing t...
Boson sampling is a computational problem that has recently been proposed as a candidate to obtain a...
We highlight some of our research done in the fields of quantum optical interferometry and quantum s...
The evolution of bosons undergoing arbitrary linear unitary transformations quickly becomes hard to ...