Area of research
Artificial Intelligence · Computational Theory and Mathematics
Research interest
Research interests include Cryptography and Data Security, Complexity and Algorithms in Graphs, Cryptographic Implementations and Security, and Coding theory and cryptography.
FrodoKEM: A CCA-Secure Learning With Errors Key Encapsulation Mechanism
Vive Galois! Part 1: Optimal SIMD Packing and Packed Bootstrapping for FHE
High-Throughput Universally Composable Threshold FHE Decryption
Cryptanalysis of Lattice-Based Sequentiality Assumptions and Proofs of Sequential Work
Functional Commitments for All Functions, with Transparent Setup and from SIS
Functional Commitments for All Functions, with Transparent Setup and from SIS
Lattice (List) Decoding Near Minkowski’s Inequality
Vector and Functional Commitments from Lattices
Advances in Cryptology – CRYPTO 2021
Advances in Cryptology – CRYPTO 2021
Advances in Cryptology – CRYPTO 2021
Advances in Cryptology – CRYPTO 2021
Improved Discrete Gaussian and Subgaussian Analysis for Lattice Cryptography
Outsourcing Computation: The Minimal Refereed Mechanism
Pseudorandomness of ring-LWE for any ring and modulus
Recovering Short Generators of Principal Ideals in Cyclotomic Rings
Using Fully Homomorphic Hybrid Encryption to Minimize Non-interative Zero-Knowledge Proofs
On Ideal Lattices and Learning with Errors over Rings
Classical hardness of learning with errors
A Toolkit for Ring-LWE Cryptography
Hardness of SIS and LWE with Small Parameters
Trapdoors for Lattices: Simpler, Tighter, Faster, Smaller
AF: Small: Complexity of Lattice Problems for Cryptography
NSFSaTC-BSF: TWC: Small: Horizons of Symmetric-Key Cryptography
NSFSaTC-BSF: TWC: Small: Horizons of Symmetric-Key Cryptography
CAREER: Lattices in Cryptography
Collaborative Research: CT-ISG: Efficient Cryptography Based on Lattices
Collaborative Research: CT-ISG: Efficient Cryptography Based on Lattices