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Maxime Plançon
Publication Activity (10 Years)
Years Active: 2019-2023
Publications (10 Years): 12
Top Topics
Security Management
Signature Verification
Highly Skewed
Algebraic Structures
Top Venues
IACR Cryptol. ePrint Arch.
ASIACRYPT (4)
Public Key Cryptography (1)
CRYPTO (1)
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Publications
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Maxime Plançon
Exploiting Algebraic Structures in Probing Security.
ASIACRYPT (4)
(2023)
Vadim Lyubashevsky
,
Ngoc Khanh Nguyen
,
Maxime Plançon
Lattice-Based Zero-Knowledge Proofs and Applications: Shorter, Simpler, and More General.
CRYPTO (2)
(2022)
Vadim Lyubashevsky
,
Ngoc Khanh Nguyen
,
Maxime Plançon
Efficient Lattice-Based Blind Signatures via Gaussian One-Time Signatures.
Public Key Cryptography (2)
(2022)
Vadim Lyubashevsky
,
Ngoc Khanh Nguyen
,
Maxime Plançon
Lattice-Based Zero-Knowledge Proofs and Applications: Shorter, Simpler, and More General.
IACR Cryptol. ePrint Arch.
2022 (2022)
Vadim Lyubashevsky
,
Ngoc Khanh Nguyen
,
Maxime Plançon
Efficient Lattice-Based Blind Signatures via Gaussian One-Time Signatures.
IACR Cryptol. ePrint Arch.
2022 (2022)
Maxime Plançon
Exploiting algebraic structures in probing security.
IACR Cryptol. ePrint Arch.
2022 (2022)
Maxime Plançon
,
Thomas Prest
Exact Lattice Sampling from Non-Gaussian Distributions.
Public Key Cryptography (1)
(2021)
Vadim Lyubashevsky
,
Ngoc Khanh Nguyen
,
Maxime Plançon
,
Gregor Seiler
Shorter Lattice-Based Group Signatures via "Almost Free" Encryption and Other Optimizations.
IACR Cryptol. ePrint Arch.
2021 (2021)
Maxime Plançon
,
Thomas Prest
Exact Lattice Sampling from Non-Gaussian Distributions.
IACR Cryptol. ePrint Arch.
2021 (2021)
Vadim Lyubashevsky
,
Ngoc Khanh Nguyen
,
Maxime Plançon
,
Gregor Seiler
Shorter Lattice-Based Group Signatures via "Almost Free" Encryption and Other Optimizations.
ASIACRYPT (4)
(2021)
Léo Ducas
,
Maxime Plançon
,
Benjamin Wesolowski
On the Shortness of Vectors to be found by the Ideal-SVP Quantum Algorithm.
IACR Cryptol. ePrint Arch.
2019 (2019)
Léo Ducas
,
Maxime Plançon
,
Benjamin Wesolowski
On the Shortness of Vectors to Be Found by the Ideal-SVP Quantum Algorithm.
CRYPTO (1)
(2019)