Two-Particle Bosonic-Fermionic Quantum Walk via Integrated Photonics
Sapienza University of Rome · Istituto Nazionale di Ottica · +4 more institutions
Abstract
Quantum walk represents one of the most promising resources for the simulation of physical quantum systems, and has also emerged as an alternative to the standard circuit model for quantum computing. Here we investigate how the particle statistics, either bosonic or fermionic, influences a two-particle discrete quantum walk. Such an experiment has been realized by exploiting polarization entanglement to simulate the bunching-antibunching feature of noninteracting bosons and fermions. To this scope a novel three-dimensional geometry for the waveguide circuit is introduced, which allows accurate polarization independent behavior, maintaining remarkable control on both phase and balancement.
Citation impact
- FWCI
- 87.52
- Percentile
- 100%
- References
- 32
Authors
7- LSLinda SansoniCorresponding
Sapienza University of Rome
- FSFabio Sciarrino
Istituto Nazionale di Ottica, Sapienza University of Rome
- GVGiuseppe Vallone
Sapienza University of Rome, University of Padua
- PMPaolo Mataloni
Sapienza University of Rome, Istituto Nazionale di Ottica
- ACAndrea Crespi
National Research Council, Istituto di Fotonica e Nanotecnologie, Politecnico di Milano
Topics & keywords
- Quantum walk
- Physics
- Photon
- Quantum entanglement
- Quantum mechanics
- Quantum
- Quantum simulator
- Boson