Andrea Basso 0002

dblp:24/4040-2 · DBLP profile ↗
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15ranked-venue papers
13as first author
15since 2021 · last 2026
0000-0002-3270-1069ORCID · verified

Domains — the database's venue-derived domains; a paper can count in several

Security and privacy · 13 · 11 first-author · 13 since 2021Systems, architecture and hardware · 2 · 2 first-author · 2 since 2021
YearPublicationVenuePosition
2026 CORAL Faster Isogeny Group Action for Post-Quantum NIKE
Andrea Basso 0002, Giacomo Borin, Ryan Rueger, Sina Schaeffler
CRYPTO (4)1
2026 The Algebraic Isogeny Model: A General Model with Applications to SQIsign and Key Exchanges
Marius A. Aardal, Andrea Basso 0002, Doreen Riepel
EUROCRYPT (4)2
2026 Using Learning with Rounding to Instantiate Post-Quantum Cryptographic Algorithms
abstract
The Learning with Rounding (LWR) problem, introduced as a deterministic variant of Learning with Errors (LWE), has become a promising foundation for post-quantum cryptography. This Systematization of Knowledge (SoK) article presents a comprehensive survey of the theoretical foundations, algorithmic developments, and practical implementations of LWR-based cryptographic schemes. We introduce LWR within the broader landscape of lattice-based cryptography and post-quantum security, highlighting its advantages such as reduced randomness, improved efficiency, and enhanced side-channel resistance. We explore the evolution of security reductions from LWR to LWE, including recent advances that support practical parameter regimes and address challenges in both bounded and unbounded sample settings. This article systematically reviews existing LWR-based schemes — including Saber, Lizard, Florete, Espada, Sable, and SMAUG — analyzing their design choices, parameter sets, and performance tradeoffs. Furthermore, we examine the impact of LWR on side-channel resistance, failure probabilities, and masking efficiency, demonstrating its suitability for secure and efficient implementations. By consolidating the research spanning theory and practice, this SoK aims at guiding future cryptographic design and standardization efforts leveraging LWR.
Andrea Basso 0002, Joppe W. Bos, Jan-Pieter D'Anvers, Angshuman Karmakar, Jose Maria Bermudo Mera, Joost Renes, Sujoy Sinha Roy, Frederik Vercauteren, Peng Wang 0009, Yuewu Wang, Shicong Zhang, Chenxin Zhong
ACM Trans. Embed. Comput. Syst.1
2025 A Complete Security Proof of SQIsign
Marius A. Aardal, Andrea Basso 0002, Luca De Feo, Sikhar Patranabis, Benjamin Wesolowski
CRYPTO (6)2
2025 POKÉ: A Compact and Efficient PKE from Higher-Dimensional Isogenies
Andrea Basso 0002, Luciano Maino
EUROCRYPT (2)1
2025 PRISM: Simple and Compact Identification and Signatures from Large Prime Degree Isogenies
Andrea Basso 0002, Giacomo Borin, Wouter Castryck, Maria Corte-Real Santos, Riccardo Invernizzi, Antonin Leroux, Luciano Maino, Frederik Vercauteren, Benjamin Wesolowski
PKC (3)1
2024 Exploring SIDH-Based Signature Parameters
Andrea Basso 0002, Tako Boris Fouotsa, Péter Kutas, Abel Laval, Laurane Marco, Gustave Tchoffo Saah
ACNS (1)1
2024 SQIsign2D-West - The Fast, the Small, and the Safer
Andrea Basso 0002, Pierrick Dartois, Luca De Feo, Antonin Leroux, Luciano Maino, Giacomo Pope, Damien Robert 0001, Benjamin Wesolowski
ASIACRYPT (3)1
2023 New SIDH Countermeasures for a More Efficient Key Exchange
Andrea Basso 0002, Tako Boris Fouotsa
ASIACRYPT (8)1
2023 FESTA: Fast Encryption from Supersingular Torsion Attacks
Andrea Basso 0002, Luciano Maino, Giacomo Pope
ASIACRYPT (7)1
2023 Supersingular Curves You Can Trust
Andrea Basso 0002, Giulio Codogni, Deirdre Connolly, Luca De Feo, Tako Boris Fouotsa, Guido Maria Lido, Travis Morrison, Lorenz Panny, Sikhar Patranabis, Benjamin Wesolowski
EUROCRYPT (2)1
2023 A Post-Quantum Round-Optimal Oblivious PRF from Isogenies
Andrea Basso 0002
SAC1
2022 Poster: A Post-Quantum Oblivious PRF from Isogenies
abstract
At Asiacrypt 2020, Boneh et al. proposed a verifiable oblivious pseudorandom function based on isogenies. Basso et al. later demonstrated a subexponential attack on the pseudorandomness of the protocol.
Andrea Basso 0002
CCS1
2021 Cryptanalysis of an Oblivious PRF from Supersingular Isogenies
Andrea Basso 0002, Péter Kutas, Simon-Philipp Merz, Christophe Petit 0001, Antonio Sanso
ASIACRYPT (1)1
2021 Optimized Polynomial Multiplier Architectures for Post-Quantum KEM Saber
abstract
Saber is one of the four finalists in the ongoing NIST post-quantum cryptography standardization project. A significant portion of Saber's computation time is spent on computing polynomial multiplications in polynomial rings with powers-of-two moduli. We propose several optimization strategies for improving the performance of polynomial multiplier architectures for Saber, targeting different hardware platforms and diverse application goals. We propose two high-speed architectures that exploit the smallness of operand polynomials in Saber and can achieve great performance with a moderate area consumption. We also propose a lightweight multiplier that consumes only 541 LUTs and 301 FFs on a small Artix-7 FPGA.
Andrea Basso 0002, Sujoy Sinha Roy
DAC1