VLDB 2026 Research / reviewers in the wild / expert
Kathrin Hövelmanns
dblp:203/4219
· DBLP profile ↗
11ranked-venue papers
4as first author
9since 2021 · last 2026
0000-0002-5478-0140ORCID · verified
Domains — the database's venue-derived domains; a paper can count in several
Security and privacy · 11 · 4 first-author · 9 since 2021Theory of computation · 2
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2026 | Starfighters-On the General Applicability of X-Wing
Deirdre Connolly, Kathrin Hövelmanns, Andreas Hülsing, Stavros Kousidis, Matthias Meijers |
SP | 2 |
| 2025 | Verifiable Decapsulation: Recognizing Faulty Implementations of Post-quantum KEMs
Lewis Glabush, Felix Günther 0001, Kathrin Hövelmanns, Douglas Stebila |
CRYPTO (3) | 3 |
| 2025 | (Un)breakable Curses - Re-encryption in the Fujisaki-Okamoto Transform
Kathrin Hövelmanns, Andreas Hülsing, Christian Majenz, Fabrizio Sisinni |
EUROCRYPT (2) | 1 |
| 2025 | Treating Dishonest Ciphertexts in Post-quantum KEMs - Explicit vs. Implicit Rejection in the FO Transform
Kathrin Hövelmanns, Mikhail A. Kudinov |
PQCrypto (2) | 1 |
| 2024 | Towards Post-quantum Secure PAKE - A Tight Security Proof for OCAKE in the BPR Model
Nouri Alnahawi, Kathrin Hövelmanns, Andreas Hülsing, Silvia Ritsch |
CANS (2) | 2 |
| 2024 | A Note on Failing Gracefully: Completing the Picture for Explicitly Rejecting Fujisaki-Okamoto Transforms Using Worst-Case Correctness
Kathrin Hövelmanns, Christian Majenz |
PQCrypto (2) | 1 |
| 2022 | Failing Gracefully: Decryption Failures and the Fujisaki-Okamoto Transform
Kathrin Hövelmanns, Andreas Hülsing, Christian Majenz |
ASIACRYPT (4) | 1 |
| 2021 | Tight Adaptive Reprogramming in the QROM
Alex Bredariol Grilo, Kathrin Hövelmanns, Andreas Hülsing, Christian Majenz |
ASIACRYPT (1) | 2 |
| 2021 | Faster Lattice-Based KEMs via a Generic Fujisaki-Okamoto Transform Using Prefix HashingabstractConstructing an efficient CCA-secure KEM is generally done by first constructing a passively-secure PKE scheme, and then applying the Fujisaki-Okamoto (FO) transformation. The original FO transformation was designed to offer security in a single user setting. A stronger notion, known as multi-user security, considers the attacker's advantage in breaking one of many user's ciphertexts. Bellare et al. (EUROCRYPT 2000) showed that standard single user security implies multi-user security with a multiplicative tightness gap equivalent to the number of users. Julien Duman, Kathrin Hövelmanns, Eike Kiltz, Vadim Lyubashevsky, Gregor Seiler |
CCS | 2 |
| 2019 | Tighter Proofs of CCA Security in the Quantum Random Oracle Model
Nina Bindel, Michael Hamburg, Kathrin Hövelmanns, Andreas Hülsing, Edoardo Persichetti |
TCC (2) | 3 |
| 2017 | A Modular Analysis of the Fujisaki-Okamoto Transformation
Dennis Hofheinz, Kathrin Hövelmanns, Eike Kiltz |
TCC (1) | 2 |