VLDB 2026 Research / reviewers in the wild / expert
Ran Cohen
dblp:150/9418
· DBLP profile ↗
38ranked-venue papers
22as first author
24since 2021 · last 2026
0000-0002-1293-552XORCID · verified
Domains — the database's venue-derived domains; a paper can count in several
Security and privacy · 33 · 20 first-author · 21 since 2021Theory of computation · 8 · 4 first-author · 4 since 2021Systems, architecture and hardware · 2 · 2 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2026 | Maintaining Sublinear Locality Over Time: Adaptively Secure MPC on a Reusable Hidden Graph
Elette Boyle, Ran Cohen, Pierre Meyer |
EUROCRYPT | 2 |
| 2025 | Setup-Free Committee Sampling with Subquadratic Communication
Ran Cohen, Poulami Das 0003, Tal Moran |
ASIACRYPT (2) | 1 |
| 2025 | Peeking Into the Future: MPC Resilient to Super-Rushing Adversaries
Gilad Asharov, Anirudh C, Ran Cohen, Yuval Ishai |
EUROCRYPT (5) | 3 |
| 2025 | An Unstoppable Ideal Functionality for Signatures and a Modular Analysis of the Dolev-Strong Broadcast
Ran Cohen, Jack Doerner, Eysa Lee, Anna Lysyanskaya, Lawrence Roy |
TCC (4) | 1 |
| 2025 | Is It Even Possible? On the Parallel Composition of Asynchronous MPC Protocols
Ran Cohen, Pouyan Forghani, Juan A. Garay 0001, Rutvik Patel, Vassilis Zikas |
TCC (1) | 1 |
| 2025 | Communication lower bounds for cryptographic broadcast protocolsabstractAbstract Broadcast protocols enable a set of n parties to agree on the input of a designated sender, even facing attacks by malicious parties. In the honest-majority setting, randomization and cryptography were harnessed to achieve low-communication broadcast with sub-quadratic total communication and balanced sub-linear cost per party. However, comparatively little is known in the dishonest-majority setting. Here, the most communication-efficient constructions are based on Dolev and Strong (SICOMP ’83), and sub-quadratic broadcast has not been achieved. On the other hand, the only nontrivial $$\omega (n)$$ ω ( n ) communication lower bounds are restricted to deterministic protocols, or against strong adaptive adversaries that can perform “after the fact” removal of messages. We provide new communication lower bounds in this space, which hold against arbitrary cryptography and setup assumptions, as well as a simple sub-quadratic broadcast protocol showing near tightness of our first bound. Erica Blum, Elette Boyle, Ran Cohen, Chen-Da Liu-Zhang |
Distributed Comput. | 3 |
| 2025 | Guaranteed Output in $O(\sqrt{n})$ Rounds for Round-Robin Sampling Protocols
Ran Cohen, Jack Doerner, Yashvanth Kondi, Abhi Shelat |
J. Cryptol. | 1 |
| 2024 | Secure Multiparty Computation with Identifiable Abort via Vindicating Release
Ran Cohen, Jack Doerner, Yashvanth Kondi, Abhi Shelat |
CRYPTO (8) | 1 |
| 2024 | Efficient Agreement Over Byzantine Gossip
Ran Cohen, Julian Loss, Tal Moran |
FC (1) | 1 |
| 2024 | Breaking the $O(\sqrt{n})$-Bit Barrier: Byzantine Agreement with Polylog Bits Per Party
Elette Boyle, Ran Cohen, Aarushi Goel |
J. Cryptol. | 2 |
| 2023 | Completeness Theorems for Adaptively Secure Broadcast
Ran Cohen, Juan A. Garay 0001, Vassilis Zikas |
CRYPTO (1) | 1 |
| 2023 | Concurrent Asynchronous Byzantine Agreement in Expected-Constant Rounds, Revisited
Ran Cohen, Pouyan Forghani, Juan A. Garay 0001, Rutvik Patel, Vassilis Zikas |
TCC (4) | 1 |
| 2023 | Locally Verifiable Distributed SNARGs
Eden Aldema Tshuva, Elette Boyle, Ran Cohen, Tal Moran, Rotem Oshman |
TCC (1) | 3 |
| 2023 | Communication Lower Bounds for Cryptographic Broadcast Protocols
Erica Blum, Elette Boyle, Ran Cohen, Chen-Da Liu-Zhang |
DISC | 3 |
| 2023 | On the Power of an Honest Majority in Three-Party Computation Without Broadcast
Bar Alon 0001, Ran Cohen, Eran Omri, Tom Suad |
J. Cryptol. | 2 |
| 2023 | Topology-Hiding Communication from Minimal Assumptions
Marshall Ball, Elette Boyle, Ran Cohen, Lisa Kohl, Tal Malkin, Pierre Meyer, Tal Moran |
J. Cryptol. | 3 |
| 2023 | Must the Communication Graph of MPC Protocols be an Expander?
Elette Boyle, Ran Cohen, Deepesh Data, Pavel Hubácek |
J. Cryptol. | 2 |
| 2023 | Adaptively Secure MPC with Sublinear Communication Complexity
Ran Cohen, Abhi Shelat, Daniel Wichs |
J. Cryptol. | 1 |
| 2022 | Guaranteed Output in $O(\sqrt{n})$ Rounds for Round-Robin Sampling Protocols
Ran Cohen, Jack Doerner, Yashvanth Kondi, Abhi Shelat |
EUROCRYPT (1) | 1 |
| 2022 | Multiparty Generation of an RSA Modulus
Megan Chen, Jack Doerner, Yashvanth Kondi, Eysa Lee, Schuyler Rosefield, Abhi Shelat, Ran Cohen |
J. Cryptol. | 7 |
| 2022 | On the Round Complexity of Randomized Byzantine AgreementabstractWe prove lower bounds on the round complexity of randomized Byzantine agreement (BA) protocols, bounding the halting probability of such protocols after one and two rounds. In particular, we prove that: 1. BA protocols resilient against n/3 [resp., n/4] corruptions terminate (under attack) at the end of the first round with probability at most o(1) [resp., $$1/2+ o(1)$$ ]. 2. BA protocols resilient against a fraction of corruptions greater than 1/4 terminate at the end of the second round with probability at most $$1-\Theta (1)$$ . 3. For a large class of protocols (including all BA protocols used in practice) and under a plausible combinatorial conjecture, BA protocols resilient against a fraction of corruptions greater than 1/3 [resp., 1/4] terminate at the end of the second round with probability at most o(1) [resp., $$1/2 + o(1)$$ ]. The above bounds hold even when the parties use a trusted setup phase, e.g., a public-key infrastructure (PKI). The third bound essentially matches the recent protocol of Micali (ITCS’17) that tolerates up to n/3 corruptions and terminates at the end of the third round with constant probability. Ran Cohen, Iftach Haitner, Nikolaos Makriyannis, Matan Orland, Alex Samorodnitsky |
J. Cryptol. | 1 |
| 2022 | From Fairness to Full Security in Multiparty Computation
Ran Cohen, Iftach Haitner, Eran Omri, Lior Rotem |
J. Cryptol. | 1 |
| 2021 | Breaking the O(√ n)-Bit Barrier: Byzantine Agreement with Polylog Bits Per PartyabstractByzantine agreement (BA), the task of n parties to agree on one of their input bits in the face of malicious agents, is a powerful primitive that lies at the core of a vast range of distributed protocols. Interestingly, in BA protocols with the best overall communication, the demands of the parties are highly unbalanced: the amortized cost is Õ(1) bits per party, but some parties must send Ω(n) bits. In best known balanced protocols, the overall communication is sub-optimal, with each party communicating Õ(√n). Elette Boyle, Ran Cohen, Aarushi Goel |
PODC | 2 |
| 2021 | Round-Preserving Parallel Composition of Probabilistic-Termination Cryptographic Protocols
Ran Cohen, Sandro Coretti, Juan A. Garay 0001, Vassilis Zikas |
J. Cryptol. | 1 |
| 2020 | Multiparty Generation of an RSA Modulus
Megan Chen, Ran Cohen, Jack Doerner, Yashvanth Kondi, Eysa Lee, Schuyler Rosefield, Abhi Shelat |
CRYPTO (3) | 2 |
| 2020 | Broadcast-Optimal Two-Round MPC
Ran Cohen, Juan A. Garay 0001, Vassilis Zikas |
EUROCRYPT (2) | 1 |
| 2020 | On the Power of an Honest Majority in Three-Party Computation Without Broadcast
Bar Alon 0001, Ran Cohen, Eran Omri, Tom Suad |
TCC (2) | 2 |
| 2020 | Topology-Hiding Communication from Minimal Assumptions
Marshall Ball, Elette Boyle, Ran Cohen, Lisa Kohl, Tal Malkin, Pierre Meyer, Tal Moran |
TCC (2) | 3 |
| 2019 | Adaptively Secure MPC with Sublinear Communication Complexity
Ran Cohen, Abhi Shelat, Daniel Wichs |
CRYPTO (2) | 1 |
| 2019 | Is Information-Theoretic Topology-Hiding Computation Possible?
Marshall Ball, Elette Boyle, Ran Cohen, Tal Malkin, Tal Moran |
TCC (1) | 3 |
| 2019 | On the Round Complexity of Randomized Byzantine Agreement
Ran Cohen, Iftach Haitner, Nikolaos Makriyannis, Matan Orland, Alex Samorodnitsky |
DISC | 1 |
| 2019 | Probabilistic Termination and Composability of Cryptographic Protocols
Ran Cohen, Sandro Coretti, Juan A. Garay 0001, Vassilis Zikas |
J. Cryptol. | 1 |
| 2018 | Must the Communication Graph of MPC Protocols be an Expander?
Elette Boyle, Ran Cohen, Deepesh Data, Pavel Hubácek |
CRYPTO (3) | 2 |
| 2018 | Characterization of Secure Multiparty Computation Without Broadcast
Ran Cohen, Iftach Haitner, Eran Omri, Lior Rotem |
J. Cryptol. | 1 |
| 2017 | Round-Preserving Parallel Composition of Probabilistic-Termination Cryptographic ProtocolsabstractAn important benchmark for multi-party computation protocols (MPC) is their round complexity. For several important MPC tasks, (tight) lower bounds on the round complexity are known. However, for some of these tasks, such as broadcast, the lower bounds can be circumvented when the termination round of every party is not a priori known, and simultaneous termination is not guaranteed. Protocols with this property are called probabilistic-termination (PT) protocols. Running PT protocols in parallel affects the round complexity of the resulting protocol in somewhat unexpected ways. For instance, an execution of m protocols with constant expected round complexity might take O(log m) rounds to complete. In a seminal work, Ben-Or and El-Yaniv (Distributed Computing '03) developed a technique for parallel execution of arbitrarily many broadcast protocols, while preserving expected round complexity. More recently, Cohen et al. (CRYPTO '16) devised a framework for universal composition of PT protocols, and provided the first composable parallel-broadcast protocol with a simulation-based proof. These constructions crucially rely on the fact that broadcast is ``privacy free,'' and do not generalize to arbitrary protocols in a straightforward way. This raises the question of whether it is possible to execute arbitrary PT protocols in parallel, without increasing the round complexity. In this paper we tackle this question and provide both feasibility and infeasibility results. We construct a round-preserving protocol compiler, secure against a dishonest minority of actively corrupted parties, that compiles arbitrary protocols into a protocol realizing their parallel composition, while having a black-box access to the underlying protocols. Furthermore, we prove that the same cannot be achieved, using known techniques, given only black-box access to the functionalities realized by the protocols, unless merely security against semi-honest corruptions is required, for which case we provide a protocol. Ran Cohen, Sandro Coretti, Juan A. Garay 0001, Vassilis Zikas |
ICALP | 1 |
| 2017 | Fairness Versus Guaranteed Output Delivery in Secure Multiparty Computation
Ran Cohen, Yehuda Lindell |
J. Cryptol. | 1 |
| 2016 | Probabilistic Termination and Composability of Cryptographic Protocols
Ran Cohen, Sandro Coretti, Juan A. Garay 0001, Vassilis Zikas |
CRYPTO (3) | 1 |
| 2014 | Fairness versus Guaranteed Output Delivery in Secure Multiparty Computation
Ran Cohen, Yehuda Lindell |
ASIACRYPT (2) | 1 |