Zhedong Wang

dblp:217/6920 · DBLP profile ↗
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15ranked-venue papers
4as first author
13since 2021 · last 2026
0009-0004-6358-6595ORCID · corroborated

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

Security and privacy · 15 · 4 first-author · 13 since 2021Theory of computation · 1 · 1 since 2021
YearPublicationVenuePosition
2026 FE for inner products and its application to multi-authority ABE
Zhedong Wang, Xiong Fan, Feng-Hao Liu
Des. Codes Cryptogr.1
2025 Revisiting Adaptively Secure IBE from Lattices with Smaller Modulus: A Conceptually Simple Framework with Low Overhead
Weidan Ji, Zhedong Wang, Lin Lyu 0001, Dawu Gu
ASIACRYPT (3)2
2025 Revisiting the Robustness of (R/M)LWR Under Polynomial Moduli with Its Applications
Zhedong Wang, Haoxiang Jin, Feng-Hao Liu
ASIACRYPT (3)1
2025 Adaptively Secure IBE from Lattices with Asymptotically Better Efficiency
Weidan Ji, Zhedong Wang, Lin Lyu 0001, Dawu Gu
PKC (1)2
2025 Discrete Gaussians Modulo Sub-Lattices: New Leftover Hash Lemmas for Discrete Gaussians
Haoxiang Jin, Feng-Hao Liu, Zhedong Wang, Dawu Gu
PKC (2)3
2025 Almost tight security in lattices with polynomial moduli - PRF, IBE, all-but-many LTF, and more
Zhedong Wang, Qiqi Lai, Feng-Hao Liu
Des. Codes Cryptogr.1
2024 Non-interactive Publicly Verifiable Searchable Encryption with Forward and Backward Privacy
Zhilong Luo, Shifeng Sun 0001, Zhedong Wang, Dawu Gu
ACISP (1)3
2024 Identity-Based Encryption from Lattices with More Compactness in the Standard Model
Weidan Ji, Zhedong Wang, Haoxiang Jin, Qi Wang 0144, Dawu Gu
SAC (1)2
2024 Shorter ZK-SNARKs from square span programs over ideal lattices
abstract
Abstract Zero-knowledge succinct non-interactive arguments of knowledge (zk-SNARKs) are cryptographic protocols that offer efficient and privacy-preserving means of verifying NP language relations and have drawn considerable attention for their appealing applications, e.g., verifiable computation and anonymous payment protocol. Compared with the pre-quantum case, the practicability of this primitive in the post-quantum setting is still unsatisfactory, especially for the space complexity. To tackle this issue, this work seeks to enhance the efficiency and compactness of lattice-based zk-SNARKs, including proof length and common reference string (CRS) length. In this paper, we develop the framework of square span program-based SNARKs and design new zk-SNARKs over cyclotomic rings. Compared with previous works, our construction is without parallel repetition and achieves shorter proof and CRS lengths than previous lattice-based zk-SNARK schemes. Particularly, the proof length of our scheme is around $$23.3\%$$ 23.3 % smaller than the recent shortest lattice-based zk-SNARKs by Ishai et al. (in: Proceedings of the 2021 ACM SIGSAC conference on computer and communications security, pp 212–234, 2021), and the CRS length is $$3.6\times$$ 3.6 × smaller. Our constructions follow the framework of Gennaro et al. (in: Proceedings of the 2018 ACM SIGSAC conference on computer and communications security, pp 556–573, 2018), and adapt it to the ring setting by slightly modifying the knowledge assumptions. We develop concretely small constructions by using module-switching and key-switching procedures in a novel way.
Heyang Cao, Feng-Hao Liu, Zhedong Wang, Mingsheng Wang
Cybersecur.4
2024 Leakage-resilient sf IBE/sf ABE with optimal leakage rates from lattices
Qiqi Lai, Feng-Hao Liu, Zhedong Wang
Des. Codes Cryptogr.3
2023 Almost Tight Multi-user Security Under Adaptive Corruptions from LWE in the Standard Model
Shuai Han 0001, Shengli Liu 0001, Zhedong Wang, Dawu Gu
CRYPTO (5)3
2021 New Lattice Two-Stage Sampling Technique and Its Applications to Functional Encryption - Stronger Security and Smaller Ciphertexts
Qiqi Lai, Feng-Hao Liu, Zhedong Wang
EUROCRYPT (1)3
2021 Ring-Based Identity Based Encryption - Asymptotically Shorter MPK and Tighter Security
Parhat Abla, Feng-Hao Liu, Zhedong Wang
TCC (3)4
2020 Rounding in the Rings
Feng-Hao Liu, Zhedong Wang
CRYPTO (2)2
2017 Compact Inner Product Encryption from LWE
Zhedong Wang, Xiong Fan, Mingsheng Wang
ICICS1