arXiv · 2608.17629
Unclonable encryption from BB84 states: a simultaneous Goldreich-Levin reduction
Abstract
Goldreich-Levin reductions are ubiquitous in cryptography: they convert an algorithm capable of guessing $\langle r, m \rangle$ (mod $2$) for a hidden string $m$ and a random challenge $r$, to one that is capable of extracting the entirety of $m$. Here, we describe a "simultaneous" Goldreich-Levin reduction for two entangled parties who are capable of guessing $\langle r, m \rangle$ given uniformly random identical challenges $r$. This allows to upgrade any unclonable encryption scheme satisfying "search" security to one satisfying the gold standard of unclonable "indistinguishability". As a corollary, we show that the simplest candidate unclonable encryption scheme from BB84 states satisfies unclonable indistinguishability. This result was discovered by GPT-5.6 Ultra after a few interactions. Our prompts included recent results on unclonable encryption by Ananth and Sahai, and Ragavan.
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Andrea Coladangelo, Qipeng Liu, Ziyi Xie. 2026-08-18. Unclonable encryption from BB84 states: a simultaneous Goldreich-Levin reduction. https://arxiv.org/abs/2608.17629
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