English

QMA Lower Bounds for Batch Verification via Approximate Degree

Computational Complexity 2026-07-09 v1

Abstract

We study batch verification in QMA query and communication complexity, where the goal is to understand how the resources needed to verify mm copies of a Boolean function ff depend on mm. We give a general technique for proving lower bounds on the witness-query tradeoff needed to batch verify a function ff in terms of its approximate degree. Applying this technique to an explicit family of DNF formulas ff, we show that attempting to save even a constant factor on the witness length of the baseline approach to batch verifying ff necessitates a large polynomial increase in the query cost. We also obtain new lower bounds on the QMA query complexity of read-once CNF formulas and on the surjectivity and kk-element distinctness functions. Our lower bounds also lift to give communication analogs of these results.

Cite

@article{arxiv.2607.08888,
  title  = {QMA Lower Bounds for Batch Verification via Approximate Degree},
  author = {Mark Bun and Mandar Juvekar and Samuel King},
  journal= {arXiv preprint arXiv:2607.08888},
  year   = {2026}
}