Photonic counterdiabatic quantum optimization algorithm Articles uri icon

authors

  • Chandarana, Pranav
  • Paul, Koushik
  • Garcia-de-Andoin, Mikel
  • BAN, YUE
  • Sanz, Mikel
  • Chen, Xi

publication date

  • September 2024

start page

  • 315-1

end page

  • 315-9

volume

  • 7

International Standard Serial Number (ISSN)

  • 2399-3650

abstract

  • One of the key applications of near-term quantum computers has been the development of quantum optimization algorithms. However, these algorithms have largely been focused on qubit-based technologies. Here, we propose a hybrid quantum-classical approximate optimization algorithm for photonic quantum computing, specifically tailored for addressing continuous-variable optimization problems. Inspired by counterdiabatic protocols, our algorithm reduces the required quantum operations for optimization compared to adiabatic protocols. This reduction enables us to tackle non-convex continuous optimization within the near-term era of quantum computing. Through illustrative benchmarking, we show that our approach can outperform existing state-of-the-art hybrid adiabatic quantum algorithms in terms of convergence and implementability. Our algorithm offers a practical and accessible experimental realization, bypassing the need for high-order operations and overcoming experimental constraints. We conduct a proof-of-principle demonstration on Xanadu's eight-mode nanophotonic quantum chip, successfully showcasing the feasibility and potential impact of the algorithm.

subjects

  • Physics