Ilaria Chillotti

dblp:175/5881 · DBLP profile ↗
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12ranked-venue papers
6as first author
4since 2021 · last 2024
0000-0002-0319-4707ORCID · verified

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

Security and privacy · 11 · 5 first-author · 3 since 2021Theory of computation · 1 · 1 first-author · 1 since 2021
YearPublicationVenuePosition
2024 New Secret Keys for Enhanced Performance in (T)FHE
abstract
Fully Homomorphic Encryption has known impressive improvements in the last 15 years, going from a technology long thought to be impossible to an existing family of encryption schemes able to solve a plethora of practical use cases related to the privacy of sensitive information. Recent results mainly focus on improving techniques within the traditionally defined framework of GLWE-based schemes, but the recent CPU implementation improvements are mainly incremental. To keep improving this technology, one solution is to modify the aforementioned framework, by using slightly different hardness assumptions.
Loris Bergerat, Ilaria Chillotti, Damien Ligier, Jean-Baptiste Orfila, Adeline Roux-Langlois, Samuel Tap
CCS2
2024 Scooby: Improved multi-party homomorphic secret sharing based on FHE
Ilaria Chillotti, Emmanuela Orsini, Peter Scholl, Barry Van Leeuwen
Inf. Comput.1
2023 Parameter Optimization and Larger Precision for (T)FHE
Loris Bergerat, Anas Boudi, Quentin Bourgerie, Ilaria Chillotti, Damien Ligier, Jean-Baptiste Orfila, Samuel Tap
J. Cryptol.4
2021 Improved Programmable Bootstrapping with Larger Precision and Efficient Arithmetic Circuits for TFHE
Ilaria Chillotti, Damien Ligier, Jean-Baptiste Orfila, Samuel Tap
ASIACRYPT (3)1
2020 SANNS: Scaling Up Secure Approximate k-Nearest Neighbors Search
Hao Chen 0030, Ilaria Chillotti, Yihe Dong, Oxana Poburinnaya, Ilya P. Razenshteyn, M. Sadegh Riazi
USENIX Security Symposium2
2020 TFHE: Fast Fully Homomorphic Encryption Over the Torus
Ilaria Chillotti, Nicolas Gama, Mariya Georgieva, Malika Izabachène
J. Cryptol.1
2019 Multi-Key Homomorphic Encryption from TFHE
Hao Chen 0030, Ilaria Chillotti, Yongsoo Song
ASIACRYPT (2)2
2019 Onion Ring ORAM: Efficient Constant Bandwidth Oblivious RAM from (Leveled) TFHE
abstract
Oblivious RAM (ORAM) is a cryptographic primitive that allows a client to hide access pattern to its data encrypted and stored at a remote server. Traditionally, ORAM algorithms assume the server acts purely as a storage device. Under this assumption, ORAM has at least log(N) bandwidth blowup for N data entries. After three decades of improvements, ORAM algorithms have reached the optimal logarithmic bandwidth blowup. Nonetheless, in many practical use-cases a constant bandwidth overhead is desirable. To this purpose, Devadas et al. (TCC 2016) formalized the server computation model for ORAM and proposed Onion ORAM which relies on homomorphic computation to achieve constant worst-case bandwidth blowup. This line of work is generally believed to be purely theoretical, due to the large overheads of homomorphic computation. In this paper, we present Onion Ring ORAM, the first efficient constant bandwidth ORAM scheme in the single server model, based on the Onion ORAM construction and the leveled version of the TFHE scheme by Chillotti et al.. We propose a series of improvements, most notably including a more efficient homomorphic permutation protocol. We implement Onion Ring ORAM and show that it can outperform state-of-the-art logarithmic-bandwidth ORAM like Path ORAMs and Ring ORAM when the network throughput is limited. Under one setting, our construction reduces monetary cost per access by 40% and end-to-end latency by 35% over Ring ORAM.
Hao Chen 0030, Ilaria Chillotti, Ling Ren 0001
CCS2
2019 Improved Bootstrapping for Approximate Homomorphic Encryption
Hao Chen 0030, Ilaria Chillotti, Yongsoo Song
EUROCRYPT (2)2
2017 Faster Packed Homomorphic Operations and Efficient Circuit Bootstrapping for TFHE
Ilaria Chillotti, Nicolas Gama, Mariya Georgieva, Malika Izabachène
ASIACRYPT (1)1
2016 Faster Fully Homomorphic Encryption: Bootstrapping in Less Than 0.1 Seconds
Ilaria Chillotti, Nicolas Gama, Mariya Georgieva, Malika Izabachène
ASIACRYPT (1)1
2016 A Homomorphic LWE Based E-voting Scheme
Ilaria Chillotti, Nicolas Gama, Mariya Georgieva, Malika Izabachène
PQCrypto1