Universal linear manipulation via routing and projective measurements
Abstract
Multiport interferometers with ports are basic devices in both classical and quantum photonics. Ideally, they implement a linear unitary transformation between the input and output electric field vectors with components, each associated with a spatial mode of classical coherent light or a single photon. Standard designs for a fully reconfigurable universal multiport interferometer are given by the Reck or the Clements schemes. In this work, we introduce routing schemes to implement a generic unitary transformation on classical coherent light or single photons using linear or tree geometries via multiple projective measurements on a single detector with the minimum number of components. Then, we generalize this result to the case of any multi-photon state for scattershot boson sampling experiments with multi-routing schemes. Finally, we test the robustness of routing schemes compared to universal schemes with respect to losses and phase noise.
Cite
@article{arxiv.2608.05003,
title = {Universal linear manipulation via routing and projective measurements},
author = {Alessio Baldazzi and Sonia Mazzucchi and Lorenzo Pavesi},
journal= {arXiv preprint arXiv:2608.05003},
year = {2026}
}
Comments
44 pages, 16 figures