| 2026 | CRYPTO | From NIZK Arguments to ZAPs, Generically. | Anish Banerjee, Brent Waters, David J. Wu |
| 2026 | CRYPTO | Fair-Weather No More: Guaranteed Efficiency in Secure Group Messaging. | James Bartusek, Nir Bitansky, Yevgeniy Dodis, Rachit Garg, David J. Wu |
| 2026 | CRYPTO | Pairing-Based Registered ABE for Boolean Formulas with a Linear-Size CRS. | Roy Stracovsky, Brent Waters, David J. Wu |
| 2026 | EuroCrypt | Simultaneous-Message and Succinct Secure Computation: Reusable and Multiparty Protocols. | Siddharth Agarwal, Abhishek Jain, Akshayaram Srinivasan, David J. Wu |
| 2026 | EuroCrypt | Distributed Monotone-Policy Encryption for DNFs from Lattices. | Jeffrey Champion, David J. Wu |
| 2026 | EuroCrypt | The Structured Generic-Group Model. | Henry Corrigan-Gibbs, Alexandra Henzinger, David J. Wu |
| 2026 | EuroCrypt | Threshold Batched Identity-Based Encryption from Pairings in the Plain Model. | Junqing Gong, Brent Waters, Hoeteck Wee, David J. Wu |
| 2026 | EuroCrypt | Silent Threshold Cryptography from Pairings: Expressive Policies in the Plain Model. | Brent Waters, David J. Wu |
| 2025 | ASIACRYPT | Pairing-Based Batch Arguments for NP with a Linear-Size CRS. | Binyi Chen, Noel Elias, David J. Wu |
| 2025 | ASIACRYPT | Succinct Witness Encryption for Batch Languages and Applications. | Lalita Devadas, Abhishek Jain, Brent Waters, David J. Wu |
| 2025 | ASIACRYPT | Pairing-Based Aggregate Signatures Without Random Oracles. | Susan Hohenberger, Brent Waters, David J. Wu |
| 2025 | CRYPTO | Registered ABE and Adaptively-Secure Broadcast Encryption from Succinct LWE. | Jeffrey Champion, Yao-Ching Hsieh, David J. Wu |
| 2025 | CRYPTO | A Pure Indistinguishability Obfuscation Approach to Adaptively-Sound SNARGs for sfNP. | Brent Waters, David J. Wu |
| 2025 | CRYPTO | Unbounded Distributed Broadcast Encryption and Registered ABE from Succinct LWE. | Hoeteck Wee, David J. Wu |
| 2025 | EuroCrypt | A Generic Approach to Adaptively-Secure Broadcast Encryption in the Plain Model. | Yao-Ching Hsieh, Brent Waters, David J. Wu |
| 2025 | EuroCrypt | Multi-authority Registered Attribute-Based Encryption. | George Lu, Brent Waters, David J. Wu |
| 2025 | EuroCrypt | New Techniques for Preimage Sampling: Improved NIZKs and More from LWE. | Brent Waters, Hoeteck Wee, David J. Wu |
| 2025 | PKC | Adaptively-Secure Big-Key Identity-Based Encryption. | Jeffrey Champion, Brent Waters, David J. Wu |
| 2025 | PKC | Monotone-Policy BARGs and More from BARGs and Quadratic Residuosity. | Shafik Nassar, Brent Waters, David J. Wu |
| 2025 | TCC | A Hidden-Bits Approach to Statistical ZAPs from LWE. | Eli Bradley, George Lu, Shafik Nassar, Brent Waters, David J. Wu |
| 2025 | TCC | The Pseudorandomness of Legendre Symbols Under the Quadratic-Residuosity Assumption. | Henry Corrigan-Gibbs, David J. Wu |
| 2024 | CCS | Respire: High-Rate PIR for Databases with Small Records. | Alexander Burton, Samir Jordan Menon, David J. Wu |
| 2024 | CRYPTO | The One-Wayness of Jacobi Signatures. | Henry Corrigan-Gibbs, David J. Wu |
| 2024 | CRYPTO | Reducing the CRS Size in Registered ABE Systems. | Rachit Garg, George Lu, Brent Waters, David J. Wu |
| 2024 | EuroCrypt | Succinct Functional Commitments for Circuits from k-sfLin. | Hoeteck Wee, David J. Wu |
| 2024 | FOCS | Dot-Product Proofs and Their Applications. | Nir Bitansky, Prahladh Harsha, Yuval Ishai, Ron D. Rothblum, David J. Wu |
| 2024 | ICLR | The Update-Equivalence Framework for Decision-Time Planning. | Samuel Sokota, Gabriele Farina, David J. Wu, Hengyuan Hu, Kevin A. Wang, J. Zico Kolter, Noam Brown |
| 2024 | STOC | Adaptively-Sound Succinct Arguments for NP from Indistinguishability Obfuscation. | Brent Waters, David J. Wu |
| 2024 | TCC | Batch Arguments to NIZKs from One-Way Functions. | Eli Bradley, Brent Waters, David J. Wu |
| 2024 | TCC | Distributed Broadcast Encryption from Lattices. | Jeffrey Champion, David J. Wu |
| 2024 | TCC | Batching Adaptively-Sound SNARGs for NP. | Lalita Devadas, Brent Waters, David J. Wu |
| 2024 | TCC | Monotone Policy BARGs from BARGs and Additively Homomorphic Encryption. | Shafik Nassar, Brent Waters, David J. Wu |
| 2023 | ASIACRYPT | Lattice-Based Functional Commitments: Fast Verification and Cryptanalysis. | Hoeteck Wee, David J. Wu |
| 2023 | CCS | Realizing Flexible Broadcast Encryption: How to Broadcast to a Public-Key Directory. | Rachit Garg, George Lu, Brent Waters, David J. Wu |
| 2023 | CRYPTO | Non-interactive Zero-Knowledge from Non-interactive Batch Arguments. | Jeffrey Champion, David J. Wu |
| 2023 | CRYPTO | How to Use (Plain) Witness Encryption: Registered ABE, Flexible Broadcast, and More. | Cody Freitag, Brent Waters, David J. Wu |
| 2023 | EuroCrypt | Registered Attribute-Based Encryption. | Susan Hohenberger, George Lu, Brent Waters, David J. Wu |
| 2023 | EuroCrypt | Succinct Vector, Polynomial, and Functional Commitments from Lattices. | Hoeteck Wee, David J. Wu |
| 2023 | ICLR | Mastering the Game of No-Press Diplomacy via Human-Regularized Reinforcement Learning and Planning. | Anton Bakhtin, David J. Wu, Adam Lerer, Jonathan Gray, Athul Paul Jacob, Gabriele Farina, Alexander H. Miller, Noam Brown |
| 2023 | ICLR | Adversarial Diversity in Hanabi. | Brandon Cui, Andrei Lupu, Samuel Sokota, Hengyuan Hu, David J. Wu, Jakob Nicolaus Foerster |
| 2023 | ICML | Abstracting Imperfect Information Away from Two-Player Zero-Sum Games. | Samuel Sokota, Ryan D'Orazio, Chun Kai Ling, David J. Wu, J. Zico Kolter, Noam Brown |
| 2022 | CRYPTO | Batch Arguments for sfNP and More from Standard Bilinear Group Assumptions. | Brent Waters, David J. Wu |
| 2022 | ICLR | A Fine-Tuning Approach to Belief State Modeling. | Samuel Sokota, Hengyuan Hu, David J. Wu, J. Zico Kolter, Jakob Nicolaus Foerster, Noam Brown |
| 2022 | ICML | Modeling Strong and Human-Like Gameplay with KL-Regularized Search. | Athul Paul Jacob, David J. Wu, Gabriele Farina, Adam Lerer, Hengyuan Hu, Anton Bakhtin, Jacob Andreas, Noam Brown |
| 2022 | PKC | Traceable PRFs: Full Collusion Resistance and Active Security. | Sarasij Maitra, David J. Wu |
| 2022 | SP | SPIRAL: Fast, High-Rate Single-Server PIR via FHE Composition. | Samir Jordan Menon, David J. Wu |
| 2022 | TCC | Fully Succinct Batch Arguments for sfNP from Indistinguishability Obfuscation. | Rachit Garg, Kristin Sheridan, Brent Waters, David J. Wu |
| 2022 | TCC | Multi-authority ABE from Lattices Without Random Oracles. | Brent Waters, Hoeteck Wee, David J. Wu |
| 2021 | ASIACRYPT | Beyond Software Watermarking: Traitor-Tracing for Pseudorandom Functions. | Rishab Goyal, Sam Kim, Brent Waters, David J. Wu |
| 2021 | CCS | Shorter and Faster Post-Quantum Designated-Verifier zkSNARKs from Lattices. | Yuval Ishai, Hang Su, David J. Wu |
| 2021 | SP | CryptGPU: Fast Privacy-Preserving Machine Learning on the GPU. | Sijun Tan, Brian Knott, Yuan Tian, David J. Wu |
| 2020 | ASIACRYPT | Collusion Resistant Trace-and-Revoke for Arbitrary Identities from Standard Assumptions. | Sam Kim, David J. Wu |
| 2020 | CRYPTO | On Succinct Arguments and Witness Encryption from Groups. | Ohad Barta, Yuval Ishai, Rafail Ostrovsky, David J. Wu |
| 2020 | EuroCrypt | New Constructions of Statistical NIZKs: Dual-Mode DV-NIZKs and More. | Benot Libert, Alain Passelgue, Hoeteck Wee, David J. Wu |
| 2020 | ICALP | Can Verifiable Delay Functions Be Based on Random Oracles? | Mohammad Mahmoody, Caleb Smith, David J. Wu |
| 2019 | CRYPTO | Watermarking Public-Key Cryptographic Primitives. | Rishab Goyal, Sam Kim, Nathan Manohar, Brent Waters, David J. Wu |
| 2019 | CRYPTO | Watermarking PRFs from Lattices: Stronger Security via Extractable PRFs. | Sam Kim, David J. Wu |
| 2019 | CRYPTO | New Constructions of Reusable Designated-Verifier NIZKs. | Alex Lombardi, Willy Quach, Ron D. Rothblum, Daniel Wichs, David J. Wu |
| 2018 | CRYPTO | Multi-Theorem Preprocessing NIZKs from Lattices. | Sam Kim, David J. Wu |
| 2018 | EuroCrypt | Quasi-Optimal SNARGs via Linear Multi-Prover Interactive Proofs. | Dan Boneh, Yuval Ishai, Amit Sahai, David J. Wu |
| 2018 | SCN | Function-Hiding Inner Product Encryption Is Practical. | Sam Kim, Kevin Lewi, Avradip Mandal, Hart Montgomery, Arnab Roy, David J. Wu |
| 2018 | TCC | Exploring Crypto Dark Matter: - New Simple PRF Candidates and Their Applications. | Dan Boneh, Yuval Ishai, Alain Passelgue, Amit Sahai, David J. Wu |
| 2017 | ASIACRYPT | Access Control Encryption for General Policies from Standard Assumptions. | Sam Kim, David J. Wu |
| 2017 | CRYPTO | Watermarking Cryptographic Functionalities from Standard Lattice Assumptions. | Sam Kim, David J. Wu |
| 2017 | EuroCrypt | Functional Encryption: Deterministic to Randomized Functions from Simple Assumptions. | Shashank Agrawal, David J. Wu |
| 2017 | EuroCrypt | Lattice-Based SNARGs and Their Application to More Efficient Obfuscation. | Dan Boneh, Yuval Ishai, Amit Sahai, David J. Wu |
| 2017 | HotOS | Quantum Operating Systems. | Henry Corrigan-Gibbs, David J. Wu, Dan Boneh |
| 2017 | PKC | Constraining Pseudorandom Functions Privately. | Dan Boneh, Kevin Lewi, David J. Wu |
| 2017 | TCC | Constrained Keys for Invertible Pseudorandom Functions. | Dan Boneh, Sam Kim, David J. Wu |
| 2016 | CCS | Order-Revealing Encryption: New Constructions, Applications, and Lower Bounds. | Kevin Lewi, David J. Wu |
| 2016 | ESORICS | Privacy, Discovery, and Authentication for the Internet of Things. | David J. Wu, Ankur Taly, Asim Shankar, Dan Boneh |
| 2016 | FSE | Practical Order-Revealing Encryption with Limited Leakage. | Nathan Chenette, Kevin Lewi, Stephen A. Weis, David J. Wu |
| 2016 | NDSS | Privacy-Preserving Shortest Path Computation. | David J. Wu, Joe Zimmerman, Jrmy Planul, John C. Mitchell |
| 2013 | ACNS | Private Database Queries Using Somewhat Homomorphic Encryption. | Dan Boneh, Craig Gentry, Shai Halevi, Frank Wang, David J. Wu |
| 2013 | ICML | Deep learning with COTS HPC systems. | Adam Coates, Brody Huval, Tao Wang, David J. Wu, Bryan Catanzaro, Andrew Y. Ng |
| 2012 | ICPR | End-to-end text recognition with convolutional neural networks. | Tao Wang, David J. Wu, Adam Coates, Andrew Y. Ng |
| 2011 | ICDAR | Text Detection and Character Recognition in Scene Images with Unsupervised Feature Learning. | Adam Coates, Blake Carpenter, Carl Case, Sanjeev Satheesh, Bipin Suresh, Tao Wang, David J. Wu, Andrew Y. Ng |