In recent years, quantum walks have been proposed as promising resources for the simulation of physical quantum systems. In fact it is widely adopted to simulate quantum dynamics. Up to now single particle quantum walks have been experimentally demonstrated by different approaches, while only few experiments involving many-particle quantum walks have been realized. Here we simulate the 2-particle dynamics on a discrete time quantum walk, built on an array of integrated waveguide beam splitters. The polarization independence of the quantum walk circuit allowed us to exploit the polarization entanglement to encode the symmetry of the two-photon wavefunction, thus the bunching-antibunching behavior of non interacting bosons and fermions has be...
In this manuscript I show a selection of the principal theoretical and experimental studies develope...
Quantum walks are powerful tools for quantum applications and for designing topological systems. Alt...
Quantum walks of correlated particles offer the possibility of studying large-scale quantum interfer...
Quantum walk represents one of the most promising resources for the simulation of physical quantum s...
Quantum walk represents one of the most promising resources for the simulation of physical quantum s...
We present two-photon continuous- and discrete-time quantum walks, respectively implemented in an in...
The "quantum walk" has emerged recently as a paradigmatic process for the dynamic simulation of comp...
The ability to manipulate quantum states of light by integrated devices may open new perspectives bo...
Quantum walks represent paradigmatic quantum evolutions, enabling powerful applications in the conte...
Multidimensional quantum walks can exhibit highly nontrivial topological structure, providing a powe...
Multiphoton quantum walks in integrated optics comprise an attractive controlled quantum system, tha...
Multi-photon quantum walks on integrated circuits are emonstrated, showing non-classical correlation...
Multiphoton quantum walks in integrated optics comprise an attractive controlled quantum system, tha...
Multidimensional quantum walks can exhibit highly nontrivial topological structure, providing a powe...
In this manuscript I show a selection of the principal theoretical and experimental studies develope...
Quantum walks are powerful tools for quantum applications and for designing topological systems. Alt...
Quantum walks of correlated particles offer the possibility of studying large-scale quantum interfer...
Quantum walk represents one of the most promising resources for the simulation of physical quantum s...
Quantum walk represents one of the most promising resources for the simulation of physical quantum s...
We present two-photon continuous- and discrete-time quantum walks, respectively implemented in an in...
The "quantum walk" has emerged recently as a paradigmatic process for the dynamic simulation of comp...
The ability to manipulate quantum states of light by integrated devices may open new perspectives bo...
Quantum walks represent paradigmatic quantum evolutions, enabling powerful applications in the conte...
Multidimensional quantum walks can exhibit highly nontrivial topological structure, providing a powe...
Multiphoton quantum walks in integrated optics comprise an attractive controlled quantum system, tha...
Multi-photon quantum walks on integrated circuits are emonstrated, showing non-classical correlation...
Multiphoton quantum walks in integrated optics comprise an attractive controlled quantum system, tha...
Multidimensional quantum walks can exhibit highly nontrivial topological structure, providing a powe...
In this manuscript I show a selection of the principal theoretical and experimental studies develope...
Quantum walks are powerful tools for quantum applications and for designing topological systems. Alt...
Quantum walks of correlated particles offer the possibility of studying large-scale quantum interfer...