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Lattice Based Crypto breaks in a Superposition of Spacetimes

27 March 2025
Divesh Aggarwal
Shashwat Agrawal
Rajendra Kumar
ArXiv (abs)PDFHTML
Abstract

We explore the computational implications of a superposition of spacetimes, a phenomenon hypothesized in quantum gravity theories. This was initiated by Shmueli (2024) where the author introduced the complexity class BQPOI\mathbf{BQP^{OI}}BQPOI consisting of promise problems decidable by quantum polynomial time algorithms with access to an oracle for computing order interference. In this work, it was shown that the Graph Isomorphism problem and the Gap Closest Vector Problem (with approximation factor O(n3/2)\mathcal{O}(n^{3/2})O(n3/2)) are in BQPOI\mathbf{BQP^{OI}}BQPOI. We extend this result by showing that the entire complexity class SZK\mathbf{SZK}SZK (Statistical Zero Knowledge) is contained within BQPOI\mathbf{BQP^{OI}}BQPOI. This immediately implies that the security of numerous lattice based cryptography schemes will be compromised in a computational model based on superposition of spacetimes, since these often rely on the hardness of the Learning with Errors problem, which is in SZK\mathbf{SZK}SZK.

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@article{aggarwal2025_2503.21400,
  title={ Lattice Based Crypto breaks in a Superposition of Spacetimes },
  author={ Divesh Aggarwal and Shashwat Agrawal and Rajendra Kumar },
  journal={arXiv preprint arXiv:2503.21400},
  year={ 2025 }
}
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