Samed Düzlü

dblp:281/6304 · DBLP profile ↗
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5ranked-venue papers
2as first author
5since 2021 · last 2025
0000-0001-5680-5834ORCID · verified

Domains — the database's venue-derived domains; a paper can count in several

Security and privacy · 5 · 2 first-author · 5 since 2021
YearPublicationVenuePosition
2025 Lattice-Based Sanitizable Signature Schemes: Chameleon Hash Functions and More
Sebastian Clermont, Samed Düzlü, Christian Janson, Laurens Porzenheim, Patrick Struck
PQCrypto (1)2
2024 The Role of Message-Bound Signatures for the Beyond UnForgeability Features and Weak Keys
Samed Düzlü, Patrick Struck
ISC (2)1
2024 Hash Your Keys Before Signing - BUFF Security of the Additional NIST PQC Signatures
Thomas Aulbach, Samed Düzlü, Michael Meyer 0001, Patrick Struck, Maximiliane Weishäupl
PQCrypto (2)2
2024 BUFFing FALCON Without Increasing the Signature Size
Samed Düzlü, Rune Fiedler, Marc Fischlin
SAC (1)1
2021 BUFFing signature schemes beyond unforgeability and the case of post-quantum signatures
abstract
Modern digital signature schemes can provide more guarantees than the standard notion of (strong) unforgeability, such as offering security even in the presence of maliciously generated keys, or requiring to know a message to produce a signature for it. The use of signature schemes that lack these properties has previously enabled attacks on real-world protocols. In this work we revisit several of these notions beyond unforgeability, establish relations among them, provide the first formal definition of non re-signability, and a transformation that can provide these properties for a given signature scheme in a provable and efficient way.Our results are not only relevant for established schemes: for example, the ongoing NIST PQC competition towards standardizing post-quantum signature schemes has six finalists in its third round. We perform an in-depth analysis of the candidates with respect to their security properties beyond unforgeability. We show that many of them do not yet offer these stronger guarantees, which implies that the security guarantees of these post-quantum schemes are not strictly stronger than, but instead incomparable to, classical signature schemes. We show how applying our transformation would efficiently solve this, paving the way for the standardized schemes to provide these additional guarantees and thereby making them harder to misuse.
Cas Cremers, Samed Düzlü, Rune Fiedler, Marc Fischlin, Christian Janson
SP2