EDBT 2026 Demo / reviewers in the wild / expert
Karen Azari
dblp:187/5293 · also Karen Klein
· DBLP profile ↗
20ranked-venue papers
3as first author
17since 2021 · last 2026
0009-0009-9303-750XORCID · conflict
Domains — the database's venue-derived domains; a paper can count in several
Security and privacy · 20 · 3 first-author · 17 since 2021Theory of computation · 4 · 1 first-author · 4 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2026 | Separating Verifiable Delay Functions and Time-Lock Puzzles
Hamza Abusalah, Nivesh Aggarwal, Karen Azari, Chethan Kamath, Maximilian von Consbruch |
EUROCRYPT (5) | 3 |
| 2026 | Impossibility of VDFs in the ROM: The Complete Picture
Hamza Abusalah, Karen Azari, Chethan Kamath, Erkan Tairi, Maximilian von Consbruch |
EUROCRYPT (5) | 2 |
| 2026 | On Verifiable Delay Functions from Time-Lock Puzzles
Hamza Abusalah, Karen Azari, Dario Fiore 0001, Chethan Kamath, Erkan Tairi |
PKC (4) | 2 |
| 2025 | Tighter Provable Security for TreeKEM
Karen Azari, Andreas Ellison |
ACNS (1) | 1 |
| 2025 | On the Adaptive Security of Free-XOR-Based Garbling Schemes in the Plain Model
Anasuya Acharya, Karen Azari, Chethan Kamath |
EUROCRYPT (6) | 2 |
| 2025 | Securely Instantiating 'Half Gates' Garbling in the Standard Model
Anasuya Acharya, Karen Azari, Mirza Ahad Baig, Dennis Hofheinz, Chethan Kamath |
PKC (4) | 2 |
| 2025 | Security Amplification of Threshold Signatures in the Standard Model
Karen Azari, Cecilia Boschini, Kristina Hostáková, Michael Reichle |
TCC (3) | 1 |
| 2023 | The Power of Undirected Rewindings for Adaptive Security
Dennis Hofheinz, Julia Kastner 0001, Karen Azari |
CRYPTO (2) | 3 |
| 2022 | SNACKs: Leveraging Proofs of Sequential Work for Blockchain Light Clients
Hamza Abusalah, Georg Fuchsbauer, Peter Gazi, Karen Azari |
ASIACRYPT (1) | 4 |
| 2022 | Practical Statistically-Sound Proofs of Exponentiation in Any Group
Charlotte Hoffmann, Pavel Hubácek, Chethan Kamath, Karen Azari, Krzysztof Pietrzak |
CRYPTO (2) | 4 |
| 2022 | CoCoA: Concurrent Continuous Group Key Agreement
Joël Alwen, Benedikt Auerbach, Miguel Cueto Noval, Karen Azari, Guillermo Pascual-Perez, Krzysztof Pietrzak, Michael Walter 0001 |
EUROCRYPT (2) | 4 |
| 2021 | Limits on the Adaptive Security of Yao's Garbling
Chethan Kamath, Karen Azari, Krzysztof Pietrzak, Daniel Wichs |
CRYPTO (2) | 2 |
| 2021 | Inverse-Sybil Attacks in Automated Contact Tracing
Benedikt Auerbach, Suvradip Chakraborty, Karen Azari, Guillermo Pascual-Perez, Krzysztof Pietrzak, Michael Walter 0001, Michelle Yeo |
CT-RSA | 3 |
| 2021 | Keep the Dirt: Tainted TreeKEM, Adaptively and Actively Secure Continuous Group Key AgreementabstractWhile messaging systems with strong security guarantees are widely used in practice, designing a protocol that scales efficiently to large groups and enjoys similar security guarantees remains largely open. The two existing proposals to date are ART (Cohn-Gordon et al., CCS18) and TreeKEM (IETF, The Messaging Layer Security Protocol, draft). TreeKEM is the currently considered candidate by the IETF MLS working group, but dynamic group operations (i.e. adding and removing users) can cause efficiency issues. In this paper we formalize and analyze a variant of TreeKEM which we term Tainted TreeKEM (TTKEM for short). The basic idea underlying TTKEM was suggested by Millican (MLS mailing list, February 2018). This version is more efficient than TreeKEM for some natural distributions of group operations, we quantify this through simulations.Our second contribution is two security proofs for TTKEM which establish post compromise and forward secrecy even against adaptive attackers. The security loss (to the underlying PKE) in the Random Oracle Model is a polynomial factor, and a quasipolynomial one in the Standard Model. Our proofs can be adapted to TreeKEM as well. Before our work no security proof for any TreeKEM-like protocol establishing tight security against an adversary who can adaptively choose the sequence of operations was known. We also are the first to prove (or even formalize) active security where the server can arbitrarily deviate from the protocol specification. Proving fully active security – where also the users can arbitrarily deviate – remains open. Karen Azari, Guillermo Pascual-Perez, Michael Walter 0001, Chethan Kamath, Margarita Capretto, Miguel Cueto Noval, Ilia Markov, Michelle Yeo, Joël Alwen, Krzysztof Pietrzak |
SP | 1 |
| 2021 | Grafting Key Trees: Efficient Key Management for Overlapping Groups
Joël Alwen, Benedikt Auerbach, Mirza Ahad Baig, Miguel Cueto Noval, Karen Azari, Guillermo Pascual-Perez, Krzysztof Pietrzak, Michael Walter 0001 |
TCC (3) | 5 |
| 2021 | The Cost of Adaptivity in Security Games on Graphs
Chethan Kamath, Karen Azari, Krzysztof Pietrzak, Michael Walter 0001 |
TCC (2) | 2 |
| 2021 | On Treewidth, Separators and Yao's Garbling
Chethan Kamath, Karen Azari, Krzysztof Pietrzak |
TCC (2) | 2 |
| 2019 | Reversible Proofs of Sequential Work
Hamza Abusalah, Chethan Kamath, Karen Azari, Krzysztof Pietrzak, Michael Walter 0001 |
EUROCRYPT (2) | 3 |
| 2018 | On the Memory-Hardness of Data-Independent Password-Hashing FunctionsabstractWe show attacks on five data-independent memory-hard functions (iMHF) that were submitted to the password hashing competition (PHC). Informally, an MHF is a function which cannot be evaluated on dedicated hardware, like ASICs, at significantly lower hardware and/or energy cost than evaluating a single instance on a standard single-core architecture. Data-independent means the memory access pattern of the function is independent of the input; this makes iMHFs harder to construct than data-dependent ones, but the latter can be attacked by various side-channel attacks. Joël Alwen, Peter Gazi, Chethan Kamath, Karen Azari, Georg Osang, Krzysztof Pietrzak, Leonid Reyzin, Michal Rolínek, Michal Rybár |
AsiaCCS | 4 |
| 2017 | Be Adaptive, Avoid Overcommitting
Zahra Jafargholi, Chethan Kamath, Karen Azari, Ilan Komargodski, Krzysztof Pietrzak, Daniel Wichs |
CRYPTO (1) | 3 |