Reconfigurable Optical Platform for One-way Quantum Communication Complexity
Abstract
Demonstrating a practical quantum advantage remains a central goal in quantum information science. While quantum computational supremacy is still technologically demanding, communication complexity offers a promising route to showcase quantum advantage with current photonic platforms. Here we introduce a reconfigurable optical platform for one-way quantum communication complexity based on multimode fibers and wavefront shaping. We experimentally validate it by implementing a genuine one-way quantum communication complexity problem for which an exponential quantum--classical communication separation is known. Complementary numerical simulations show that the same reconfigurable decoding architecture can support more general one-way communication tasks with comparable performance, while also offering a route to higher-dimensional implementations without increasing hardware complexity. Together, these results establish multimode-fiber wavefront shaping as a versatile hardware platform for one-way quantum communication complexity and provide a concrete roadmap toward more demanding protocols, where stronger quantum--classical separations could enable practical demonstrations of quantum advantage.
Cite
@article{arxiv.2607.27181,
title = {Reconfigurable Optical Platform for One-way Quantum Communication Complexity},
author = {Francesco Mazzoncini and Hugo Defienne and Romain Alléaume and Sylvain Gigan},
journal= {arXiv preprint arXiv:2607.27181},
year = {2026}
}
Comments
25 pages, 9 figures, 3 tables; includes Supplementary Material