Yuyu Wang 0001

dblp:48/10099-1 · DBLP profile ↗
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19ranked-venue papers
14as first author
10since 2021 · last 2026
0000-0002-1198-1903ORCID · verified

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

Security and privacy · 19 · 14 first-author · 10 since 2021
YearPublicationVenuePosition
2026 Secure Computation Against NC1 Leakage Without Secure Hardware
Yuyu Wang 0001
CRYPTO (7)1
2025 Leakage-Resilient Circuits Against sfNC1, Revisited
Yuyu Wang 0001
CRYPTO (5)1
2024 Fine-Grained Non-interactive Key-Exchange Without Idealized Assumptions
Yuyu Wang 0001, Chuanjie Su, Jiaxin Pan 0001
CRYPTO (2)1
2023 A Simple and Efficient Framework of Proof Systems for NP
Yuyu Wang 0001, Chuanjie Su, Jiaxin Pan 0001, Yu Chen 0003
ASIACRYPT (2)1
2023 Fine-Grained Secure Attribute-Based Encryption
Yuyu Wang 0001, Jiaxin Pan 0001, Yu Chen 0003
J. Cryptol.1
2022 Unconditionally Secure NIZK in the Fine-Grained Setting
Yuyu Wang 0001, Jiaxin Pan 0001
ASIACRYPT (2)1
2022 Non-Interactive Zero-Knowledge Proofs with Fine-Grained Security
Yuyu Wang 0001, Jiaxin Pan 0001
EUROCRYPT (2)1
2021 Hierarchical Integrated Signature and Encryption - (or: Key Separation vs. Key Reuse: Enjoy the Best of both Worlds)
Yu Chen 0003, Qiang Tang 0005, Yuyu Wang 0001
ASIACRYPT (2)3
2021 Fine-Grained Secure Attribute-Based Encryption
Yuyu Wang 0001, Jiaxin Pan 0001, Yu Chen 0003
CRYPTO (4)1
2021 Fine-Grained Cryptography Revisited
Shohei Egashira, Yuyu Wang 0001, Keisuke Tanaka
J. Cryptol.2
2019 Shorter QA-NIZK and SPS with Tighter Security
Masayuki Abe, Charanjit S. Jutla, Miyako Ohkubo, Jiaxin Pan 0001, Arnab Roy 0001, Yuyu Wang 0001
ASIACRYPT (3)6
2019 Fine-Grained Cryptography Revisited
Shohei Egashira, Yuyu Wang 0001, Keisuke Tanaka
ASIACRYPT (3)2
2018 Leakage-Resilient Cryptography from Puncturable Primitives and Obfuscation
Yu Chen 0003, Yuyu Wang 0001, Hong-Sheng Zhou
ASIACRYPT (2)2
2018 Memory Lower Bounds of Reductions Revisited
Yuyu Wang 0001, Takahiro Matsuda 0002, Goichiro Hanaoka, Keisuke Tanaka
EUROCRYPT (1)1
2016 How to Obtain Fully Structure-Preserving (Automorphic) Signatures from Structure-Preserving Ones
Yuyu Wang 0001, Zongyang Zhang, Takahiro Matsuda 0002, Goichiro Hanaoka, Keisuke Tanaka
ASIACRYPT (2)1
2016 Generic transformations for existentially unforgeable signature schemes in the bounded leakage model
abstract
Abstract In this paper, we present generic transformations, which allow us to be able to convert any signature scheme satisfying the weak existential unforgeability property into one satisfying the strong existential unforgeability property. Different from the previous researches, we consider this kind of transformations in the bounded leakage model, in which part of the secret information could be learned by the adversary. To achieve such transformations, we define a new cryptographic primitive called leakage resilient chameleon hash function and give an instantiation of it based on leakage resilient hard relation. By making use of this new variant of chameleon hash function, we improve the technique proposed by Steinfeld, Pieprzk, and Wang to obtain a generic transformation that works well in the bounded leakage model. Furthermore, we follow the construction of strong one‐time signature by Mohassel to give an instantiation of fully leakage resilient strong one‐time signature based on leakage resilient chameleon hash function. We prove that by combining the fully leakage resilient strong one‐time signature scheme with the transformation proposed by Huang, Wong, and Zhao, we can obtain another transformation that can convert any fully leakage resilient signature scheme that is weakly existentially unforgeable into one that is strongly existentially unforgeable without changing the signing key. Copyright © 2016 John Wiley & Sons, Ltd.
Yuyu Wang 0001, Keisuke Tanaka
Secur. Commun. Networks1
2015 Generic Transformation to Strongly Existentially Unforgeable Signature Schemes with Continuous Leakage Resiliency
Yuyu Wang 0001, Keisuke Tanaka
ACISP1
2014 Strongly Simulation-Extractable Leakage-Resilient NIZK
Yuyu Wang 0001, Keisuke Tanaka
ACISP1
2014 Generic Transformation to Strongly Existentially Unforgeable Signature Schemes with Leakage Resiliency
Yuyu Wang 0001, Keisuke Tanaka
ProvSec1