arXiv · 2102.04755
Enhancing nonclassical bosonic correlations in a Quantum Walk network through experimental control of disorder
Abstract
The presence of disorder and inhomogeneities in quantum networks has often been unexpectedly beneficial for both quantum and classical resources. Here, we experimentally realize a controllable inhomogenous Quantum Walk dynamics, which can be exploited to investigate the effect of coherent disorder on the quantum correlations between two indistinguishable photons. Through the imposition of suitable disorder configurations, we observe two photon states which exhibit an enhancement in the quantum correlations between two modes of the network, compared to the case of an ordered Quantum Walk. Different configurations of disorder can steer the system towards different realizations of such an enhancement, thus allowing spatial and temporal manipulation of quantum correlations.
Explore related subjects
Keep this discovery
Alessandro Laneve, Farzam Nosrati, Andrea Geraldi, Kobra Mahdavipour, Federico Pegoraro, Mahshid Khazaei Shadfar, Rosario Lo Franco, Paolo Mataloni. 2021-02-09. Enhancing nonclassical bosonic correlations in a Quantum Walk network through experimental control of disorder. https://doi.org/10.1103/physrevresearch.3.033235
Cite the original work for its findings. Save a collection to share your selection of sources.