English

Quantum versus Classical Separation in Simultaneous Number-on-Forehead Communication

Quantum Physics 2025-06-23 v1 Computational Complexity

Abstract

Quantum versus classical separation plays a central role in understanding the advantages of quantum computation. In this paper, we present the first exponential separation between quantum and bounded-error randomized communication complexity in a variant of the Number-on-Forehead (NOF) model. Namely, the three-player Simultaneous Number-on-Forehead model. Specifically, we introduce the Gadgeted Hidden Matching Problem and show that it can be solved using only O(logn)O(\log n) simultaneous quantum communication. In contrast, any simultaneous randomized protocol requires Ω(n1/16)\Omega(n^{1/16}) communication. On the technical side, a key obstacle in separating quantum and classical communication in NOF models is that all known randomized NOF lower bound tools, such as the discrepancy method, typically apply to both randomized and quantum protocols. In this regard, our technique provides a new method for proving randomized lower bounds in the NOF setting and may be of independent interest beyond the separation result.

Keywords

Cite

@article{arxiv.2506.16804,
  title  = {Quantum versus Classical Separation in Simultaneous Number-on-Forehead Communication},
  author = {Guangxu Yang and Jiapeng Zhang},
  journal= {arXiv preprint arXiv:2506.16804},
  year   = {2025}
}

Comments

14 pages

R2 v1 2026-07-01T03:26:11.222Z