Adaptively Secure (Aggregatable) PVSS and Application to Distributed Randomness Beacons
Renas Bacho, Julian Loss
Abstract
Publicly Verifiable Secret Sharing (PVSS) is a fundamental primitive that allows to share a secret S among n parties via a publicly verifiable transcript T. Existing (efficient) PVSS are only proven secure against static adversaries who must choose who to corrupt ahead of a protocol execution. As a result, any protocol (e.g., a distributed randomness beacon) that builds on top of such a PVSS scheme inherits this limitation. To overcome this barrier, we revisit the security of PVSS under adaptive corruptions and show that, surprisingly, many protocols from the literature already achieve it in a meaningful way:
Ask about this paper
Ask your agent about it.
Lune has read the top-tier papers around this one, so every answer names the papers it rests on.
Your agent calls
Lunesearch_papers
Free to start. No credit card required.
Terminal
Install the CLIlune papers get aab8a674-d65e-4528-bc4e-db7357513f34Cited by top-tier papers4
- Distributed Randomness Using Weighted VUFsSourav Das, Benny Pinkas, Alin Tomescu, Zhuolun XiangEUROCRYPT 2025 · 7 citations
- Scalable and Adaptively Secure Any-Trust Distributed Key Generation and All-hands CheckpointingHanwen Feng, Tiancheng Mai, Qiang TangCCS 2024 · 4 citations
- Rondo: Scalable and Reconfiguration-Friendly Randomness BeaconXuanji Meng, Xiao Sui, Zhaoxin Yang, Kang Rong et al.NDSS 2025
- SoK: Dlog-Based Distributed Key GenerationRenas Bacho, Alireza KavousiS&P 2025
Related papers
- Adaptively Secure (Aggregatable) PVSS from Standard AssumptionsRenas Bacho, Yanbo Chen, Julian LossCRYPTO 2026
- Spurt: Scalable Distributed Randomness Beacon with Transparent SetupSourav Das, Vinith Krishnan, Irene Miriam Isaac, Ling RenS&P 2022 · 80 citations
- Publicly Verifiable Secret Sharing Over Class Groups and Applications to DKG and YOSOIgnacio Cascudo, Bernardo DavidEUROCRYPT 2024 · 33 citations
- RandPiper - Reconfiguration-Friendly Random Beacons with Quadratic CommunicationAdithya Bhat, Nibesh Shrestha, Zhongtang Luo, Aniket Kate et al.CCS 2021 · 5 citations
- HydRand: Efficient Continuous Distributed RandomnessPhilipp Schindler, Aljosha Judmayer, Nicholas Stifter, Edgar R. WeipplS&P 2020 · 78 citations
