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Research PaperResearchia:202608.26016

Certified Randomness without Structure Against Shallow-Query Adversaries

Dakshita Khurana

Abstract

In a recent breakthrough, Yamakawa and Zhandry (J. ACM 2024) constructed a proof of quantumness in the quantum random oracle model (QROM) in which the quantum prover samples a codeword preimage of a publicly computable function H. They conjectured that given any H, a successful prover must sample their preimage from a high-entropy distribution over possible answers. If true, this would give a certifiable randomness protocol in the quantum random oracle model. As partial evidence for their conjec...

Submitted: August 26, 2026Subjects: Cybersecurity; Computer Science

Description / Details

In a recent breakthrough, Yamakawa and Zhandry (J. ACM 2024) constructed a proof of quantumness in the quantum random oracle model (QROM) in which the quantum prover samples a codeword preimage of a publicly computable function H. They conjectured that given any H, a successful prover must sample their preimage from a high-entropy distribution over possible answers. If true, this would give a certifiable randomness protocol in the quantum random oracle model. As partial evidence for their conjecture, Yamakawa and Zhandry proved the security of their certifiable randomness protocol assuming the Aaronson-Ambainis conjecture. We prove the security of the certifiable randomness protocol of Yamakawa-Zhandry unconditionally, without relying on the unproven Aaronson-Ambainis conjecture, against low query-depth quantum adversaries: specifically, adversaries that make up to o(\log λ) adaptive quantum queries to the random oracle.


Source: arXiv:2608.24832v1 - http://arxiv.org/abs/2608.24832v1 PDF: https://arxiv.org/pdf/2608.24832v1 Original Link: http://arxiv.org/abs/2608.24832v1

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Submission Info
Date:
Aug 26, 2026
Topic:
Computer Science
Area:
Cybersecurity
Comments:
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