| 2026 | CRYPTO | Permissionless Consensus from a Common Random String. | Damiano Abram, Marshall Ball, Juan Garay, Aggelos Kiayias |
| 2026 | EuroCrypt | Client-Server Homomorphic Secret Sharing in the CRS Model. | Damiano Abram, Geoffroy Couteau, Lalita Devadas, Aditya Hegde, Abhishek Jain, Lawrence Roy, Sacha Servan-Schreiber |
| 2025 | CRYPTO | Key-Homomorphic Computations for RAM: Fully Succinct Randomised Encodings and More. | Damiano Abram, Giulio Malavolta, Lawrence Roy |
| 2025 | STOC | Succinct Oblivious Tensor Evaluation and Applications: Adaptively-Secure Laconic Function Evaluation and Trapdoor Hashing for All Circuits. | Damiano Abram, Giulio Malavolta, Lawrence Roy |
| 2025 | TCC | On the Impossibility of Actively Secure Distributed Samplers. | Damiano Abram, Serge Fehr, Maciej Obremski, Peter Scholl |
| 2025 | TCC | Slightly Sublinear Trapdoor Hash Functions and PIR from Low-Noise LPN. | Damiano Abram, Giulio Malavolta, Lawrence Roy |
| 2024 | EuroCrypt | Constant-Round Simulation-Secure Coin Tossing Extension with Guaranteed Output. | Damiano Abram, Jack Doerner, Yuval Ishai, Varun Narayanan |
| 2024 | EuroCrypt | Succinct Homomorphic Secret Sharing. | Damiano Abram, Lawrence Roy, Peter Scholl |
| 2023 | CRYPTO | Security-Preserving Distributed Samplers: How to Generate Any CRS in One Round Without Random Oracles. | Damiano Abram, Brent Waters, Mark Zhandry |
| 2023 | TCC | Cryptography from Planted Graphs: Security with Logarithmic-Size Messages. | Damiano Abram, Amos Beimel, Yuval Ishai, Eyal Kushilevitz, Varun Narayanan |
| 2022 | CRYPTO | An Algebraic Framework for Silent Preprocessing with Trustless Setup and Active Security. | Damiano Abram, Ivan Damgrd, Claudio Orlandi, Peter Scholl |
| 2022 | EuroCrypt | Distributed (Correlation) Samplers: How to Remove a Trusted Dealer in One Round. | Damiano Abram, Peter Scholl, Sophia Yakoubov |
| 2022 | PKC | Low-Communication Multiparty Triple Generation for SPDZ from Ring-LPN. | Damiano Abram, Peter Scholl |
| 2022 | SP | Low-Bandwidth Threshold ECDSA via Pseudorandom Correlation Generators. | Damiano Abram, Ariel Nof, Claudio Orlandi, Peter Scholl, Omer Shlomovits |