| 2025 | CRYPTO | Verifiable Computation for Approximate Homomorphic Encryption Schemes. | Ignacio Cascudo, Anamaria Costache, Daniele Cozzo, Dario Fiore, Antonio Guimares, Eduardo Soria-Vazquez |
| 2024 | ASIACRYPT | HELIOPOLIS: Verifiable Computation over Homomorphically Encrypted Data from Interactive Oracle Proofs is Practical. | Diego F. Aranha, Anamaria Costache, Antonio Guimares, Eduardo Soria-Vazquez |
| 2024 | INFOCOM | Privacy Preserving Underwater Collaborative Localization using Time Lock Puzzles. | R. Praveen Jain, Pietro Tedeschi, Jeremy Nicola, Abdelrahaman Aly, Eduardo Soria-Vazquez, Victor Sucasas |
| 2023 | TCC | Taming Adaptivity in YOSO Protocols: The Modular Way. | Ran Canetti, Sebastian Kolby, Divya Ravi, Eduardo Soria-Vazquez, Sophia Yakoubov |
| 2022 | TCC | Doubly Efficient Interactive Proofs over Infinite and Non-commutative Rings. | Eduardo Soria-Vazquez |
| 2021 | CRYPTO | Efficient Information-Theoretic Multi-party Computation over Non-commutative Rings. | Daniel Escudero, Eduardo Soria-Vazquez |
| 2021 | EuroCrypt | Large Scale, Actively Secure Computation from LPN and Free-XOR Garbled Circuits. | Aner Ben-Efraim, Kelong Cong, Eran Omri, Emmanuela Orsini, Nigel P. Smart, Eduardo Soria-Vazquez |
| 2020 | ASIACRYPT | Circuit Amortization Friendly Encodingsand Their Application to Statistically Secure Multiparty Computation. | Anders P. K. Dalskov, Eysa Lee, Eduardo Soria-Vazquez |
| 2020 | CRYPTO | Efficient Constant-Round MPC with Identifiable Abort and Public Verifiability. | Carsten Baum, Emmanuela Orsini, Peter Scholl, Eduardo Soria-Vazquez |
| 2018 | ASIACRYPT | Concretely Efficient Large-Scale MPC with Active Security (or, TinyKeys for TinyOT). | Carmit Hazay, Emmanuela Orsini, Peter Scholl, Eduardo Soria-Vazquez |
| 2018 | CRYPTO | TinyKeys: A New Approach to Efficient Multi-Party Computation. | Carmit Hazay, Emmanuela Orsini, Peter Scholl, Eduardo Soria-Vazquez |
| 2017 | ACNS | Faster Secure Multi-party Computation of AES and DES Using Lookup Tables. | Marcel Keller, Emmanuela Orsini, Dragos Rotaru, Peter Scholl, Eduardo Soria-Vazquez, Srinivas Vivek |
| 2017 | ASIACRYPT | Low Cost Constant Round MPC Combining BMR and Oblivious Transfer. | Carmit Hazay, Peter Scholl, Eduardo Soria-Vazquez |
| 2016 | TCC | More Efficient Constant-Round Multi-party Computation from BMR and SHE. | Yehuda Lindell, Nigel P. Smart, Eduardo Soria-Vazquez |