Lune

CRYPTO2026Top-tier venue

Separating Non-interactive Classical Verification of Quantum Computation from Falsifiable Assumptions

Mohammed Barhoush, Tomoyuki Morimae, Ryo Nishimaki, Takashi Yamakawa

2026Year

Abstract

Mahadev [SIAM J. Comput. 2022] introduced the first protocol for classical verification of quantum computation based on the Learning-with-Errors (LWE) assumption, achieving a 4-message interactive scheme. This breakthrough naturally raised the question of whether fewer messages are possible in the plain model. Despite its importance, this question has remained unresolved. In this work, we prove that there is no quantum black-box reduction of non-interactive classical verification of quantum computation of QMA\textsf{QMA} to any falsifiable assumption. Here, "non-interactive" means that after an instance-independent setup, the protocol consists of a single message. This constitutes a strong negative result given that falsifiable assumptions cover almost all standard assumptions used in cryptography, including LWE. Our separation holds under the existence of a QMA-QCMA\textsf{QMA} \text{-} \textsf{QCMA} gap problem. Essentially, these problems require a slightly stronger assumption than QMA≠QCMA\textsf{QMA}\neq \textsf{QCMA}. To support the existence of such problems, we present a construction relative to a quantum unitary oracle.

Ask about this paper

Your agent reads all of it.

Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.

Questions to start from

Your agent calls

Luneget_paper_fulltext

Ask in Lune

Free to start. No credit card required.

lune papers fulltext 132d592f-ac82-4261-915a-1bb31dcc7345

Builds on7

Related papers

Dusk over the sea between two cliffs drawn in fine vertical lines