Paper 2026/2184

Static Group Signature with Post-Compromise Accountability

Kyosuke Yamashita, Chuo University
Abstract

Signatures with Post-Compromise Accountability (SPCA), introduced by Dayanikli et al. at SCN'26, are signature schemes that enable signatures generated before the compromise of a signing key to be distinguished from those produced after the compromise. In this paper, we extend this notion to static group signatures and introduce Group Signatures with Post-Compromise Accountability (GSPCA). GSPCA preserves the anonymity and traceability guarantees of group signatures while enabling pre-compromise signatures to be revalidated after key compromise. The coexistence of opening and revalidation algorithms gives rise to a new consistency requirement, which we formalize as opening--revalidation consistency. We present a generic construction of GSPCA from public key encryption schemes, signature schemes, and simulation-sound non-interactive zero-knowledge proof systems. A central technical difficulty is that the encryption randomness in our construction is derived from a randomized signature component and may therefore have high min-entropy without being uniformly distributed. To address this issue, we introduce adaptive hedged security against adaptive chosen-ciphertext attacks (AH-CCA), which extends indistinguishability under adaptive chosen-ciphertext attack (IND-CCA2) to adaptively chosen high-min-entropy message--randomness distributions, and show how to realize the required randomness-recovering encryption in the random oracle model. We also give a generic signature-based mechanism that provides the required min-entropy and key-binding properties. Finally, we show that ordinary IND-CCA2 security alone is insufficient as a general assumption for our construction by exhibiting an IND-CCA2 secure encryption scheme for which the resulting GSPCA scheme fails to satisfy anonymity.

Metadata
Available format(s)
PDF
Publication info
Preprint.
Keywords
cryptographygroup signaturepost-compromise accountability
Contact author(s)
kyamashita887 @ g chuo-u ac jp
History
2026-09-26: approved
2026-09-23: received
See all versions
Short URL
https://ia.cr/2026/2184
License
Creative Commons Attribution-NonCommercial-NoDerivs
CC BY-NC-ND

BibTeX

@misc{cryptoeprint:2026/2184,
      author = {Kyosuke Yamashita},
      title = {Static Group Signature with Post-Compromise Accountability},
      howpublished = {Cryptology {ePrint} Archive, Paper 2026/2184},
      year = {2026},
      url = {https://eprint.iacr.org/2026/2184}
}
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