English

Reconfigurable continuously-coupled 3D photonic circuit for Boson Sampling experiments

Quantum Physics 2023-04-14 v2

Abstract

Boson Sampling is a computational paradigm representing one of the most viable and pursued approaches to demonstrate the regime of quantum advantage. Recent results have demonstrated significant technological leaps in single-photon generation and detection, leading to progressively larger experimental instances of Boson Sampling experiments in different photonic systems. However, a crucial requirement for a fully-fledged platform solving this problem is the capability of implementing large-scale interferometers, that must simultaneously exhibit low losses, high degree of reconfigurability and the realization of arbitrary transformations. In this work, we move a step forward in this direction by demonstrating the adoption of a compact and reconfigurable 3D-integrated platform for photonic Boson Sampling. We perform 3- and 4-photon experiments by using such platform, showing the possibility of programming the circuit to implement a large number of unitary transformations. These results show that such compact and highly-reconfigurable layout can be scaled up to experiments with larger number of photons and modes, and can provide a viable direction for hybrid computing with photonic processors.

Keywords

Cite

@article{arxiv.2106.08260,
  title  = {Reconfigurable continuously-coupled 3D photonic circuit for Boson Sampling experiments},
  author = {Francesco Hoch and Simone Piacentini and Taira Giordani and Zhen-Nan Tian and Mariagrazia Iuliano and Chiara Esposito and Anita Camillini and Gonzalo Carvacho and Francesco Ceccarelli and Nicolò Spagnolo and Andrea Crespi and Fabio Sciarrino and Roberto Osellame},
  journal= {arXiv preprint arXiv:2106.08260},
  year   = {2023}
}

Comments

17 pages, 15 figures

R2 v1 2026-06-24T03:13:51.949Z