English

Unentanglement and Post-Measurement Branching in Quantum Interactive Proofs

Quantum Physics 2025-09-22 v1 Computational Complexity

Abstract

We investigate two resources whose effects on quantum interactive proofs remain poorly understood: the promise of unentanglement, and the verifier's ability to condition on an intermediate measurement, which we call post-measurement branching. We first show that unentanglement can dramatically increase computational power: three-round unentangled quantum interactive proofs equal NEXP, even if only the first message is quantum. By contrast, we prove that if the verifier uses no post-measurement branching, then the same type of unentangled proof system has at most the power of QAM. Finally, we investigate post-measurement branching in two-round quantum-classical proof systems. Unlike the equivalence between public-coin and private-coin classical interactive proofs, we give evidence of a separation in the quantum setting that arises from post-measurement branching.

Keywords

Cite

@article{arxiv.2509.15319,
  title  = {Unentanglement and Post-Measurement Branching in Quantum Interactive Proofs},
  author = {Sabee Grewal and William Kretschmer},
  journal= {arXiv preprint arXiv:2509.15319},
  year   = {2025}
}

Comments

22 pages

R2 v1 2026-07-01T05:44:38.819Z