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Toothpicks: More Efficient Fork-Free Two-Round Multi-Signatures

Authors:
Jiaxin Pan , University of Kassel, Germany
Benedikt Wagner , CISPA Helmholtz Center for Information Security, Saarland University
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DOI: 10.1007/978-3-031-58716-0_16 (login may be required)
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Presentation: Slides
Conference: EUROCRYPT 2024
Abstract: Tightly secure cryptographic schemes can be implemented with standardized parameters, while still having a sufficiently high security level backed up by their analysis. In a recent work, Pan and Wagner (Eurocrypt 2023) presented the first tightly secure two-round multi-signature scheme without pairings, called Chopsticks. While this is an interesting first theoretical step, Chopsticks is much less efficient than its non-tight counterparts. In this work, we close this gap by proposing a new tightly secure two-round multi-signature scheme that is as efficient as non-tight schemes. Our scheme is based on the DDH assumption without pairings. Compared to Chopsticks, we reduce the signature size by more than a factor of 3 and the communication complexity by more than a factor of 2. Technically, we achieve this as follows: (1) We develop a new pseudorandom path technique, as opposed to the pseudorandom matching technique in Chopsticks. (2) We construct a more efficient commitment scheme with suitable properties, which is an important primitive in both our scheme and Chopsticks. Surprisingly, we observe that the commitment scheme does not have to be binding, enabling our efficient construction.
BibTeX
@inproceedings{eurocrypt-2024-33847,
  title={Toothpicks: More Efficient Fork-Free Two-Round Multi-Signatures},
  publisher={Springer-Verlag},
  doi={10.1007/978-3-031-58716-0_16},
  author={Jiaxin Pan and Benedikt Wagner},
  year=2024
}