<div class="csl-bib-body">
<div class="csl-entry">Gerhart, P. C., Li Calsi, D., Russo, L., & Schröder, D. (2026). Fully-Adaptive Two-Round Threshold Schnorr Signatures from DDH. In J. Daemen & E. Thomé (Eds.), <i>Advances in Cryptology – EUROCRYPT 2026 : 45th Annual International Conference on the Theory and Applications of Cryptographic Techniques, Rome, Italy, May 10–14, 2026, Proceedings, Part II</i> (pp. 251–283). Springer. https://doi.org/10.1007/978-3-032-25317-0_9</div>
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dc.identifier.uri
http://hdl.handle.net/20.500.12708/230984
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dc.description.abstract
Threshold Schnorr signatures enable t-out-of-n parties to collaboratively produce signatures that are indistinguishable from standard Schnorr signatures, ensuring compatibility with existing verification systems. While constructions achieving static security are well understood and attain optimal round complexity, achieving full adaptive security that tolerates up to t-1 dynamic corruptions under standard assumptions remains a longstanding and unresolved challenge: Recent impossibility results (CRYPTO’25) either rule out known proof techniques for widely deployed schemes or require speculative assumptions and idealized models, while positive examples achieving full adaptivity from falsifiable assumptions incur higher round complexity (EUROCRYPT’25, CRYPTO’25). We overcome these barriers with the first round-optimal threshold Schnorr signature scheme that, under a slightly relaxed security model, achieves full adaptive security from DDH in the random oracle model. Our model is relaxed in the sense that the adversary may adaptively corrupt parties at any time, but each signer must refresh part of their public key after a fixed number of signing queries. These updates are executed via lightweight, succinct, stateless tokens, preserving the aggregated signature format. Our construction is enabled by a new proof technique, equivocal deterministic nonce derivation, which may be of independent interest.
en
dc.language.iso
en
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dc.relation.ispartofseries
Lecture Notes in Computer Science
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dc.subject
Threshold Signatures
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dc.subject
Schnorr Signatures
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dc.subject
Adaptive Security
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dc.title
Fully-Adaptive Two-Round Threshold Schnorr Signatures from DDH
en
dc.type
Inproceedings
en
dc.type
Konferenzbeitrag
de
dc.contributor.editoraffiliation
Radboud University Nijmegen, Netherlands (the)
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dc.contributor.editoraffiliation
Inria, Nancy, France
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dc.relation.isbn
978-3-032-25317-0
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dc.relation.doi
10.1007/978-3-032-25317-0
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dc.relation.issn
0302-9743
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dc.description.startpage
251
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dc.description.endpage
283
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dc.type.category
Full-Paper Contribution
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dc.relation.eissn
1611-3349
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tuw.booktitle
Advances in Cryptology – EUROCRYPT 2026 : 45th Annual International Conference on the Theory and Applications of Cryptographic Techniques, Rome, Italy, May 10–14, 2026, Proceedings, Part II