Amplifying the Security of Functional Encryption, Unconditionally
Aayush Jain, Alexis Korb, Nathan Manohar, Amit Sahai
Abstract
Security amplification is a fundamental problem in cryptography. In this work, we study security amplification for functional encryption (FE). We show two main results:
-
For any constant epsilon in (0,1), we can amplify any FE scheme for P/poly which is epsilon-secure against all polynomial sized adversaries to a fully secure FE scheme for P/poly, unconditionally.
-
For any constant epsilon in (0,1), we can amplify any FE scheme for P/poly which is epsilon-secure against subexponential sized adversaries to a fully subexponentially secure FE scheme for P/poly, unconditionally.
Furthermore, both of our amplification results preserve compactness of the underlying FE scheme. Previously, amplification results for FE were only known assuming subexponentially secure LWE.
Along the way, we introduce a new form of homomorphic secret sharing called set homomorphic secret sharing that may be of independent interest. Additionally, we introduce a new technique, which allows one to argue security amplification of nested primitives, and prove a general theorem that can be used to analyze the security amplification of parallel repetitions.
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 cbcf5bba-3910-4a70-8011-8fd4b27ad03bRelated papers
- Sublinear-Communication Secure Multiparty Computation Does Not Require FHEElette Boyle, Geoffroy Couteau, Pierre MeyerEUROCRYPT 2023 · 16 citations
- Amplification of Non-interactive Zero Knowledge, RevisitedNir Bitansky, Nathan GeierCRYPTO 2024 · 7 citations
- Combiners for Functional Encryption, UnconditionallyAayush Jain, Nathan Manohar, Amit SahaiEUROCRYPT 2020 · 20 citations
- Streaming Functional EncryptionJiaxin Guan, Alexis Korb, Amit SahaiCRYPTO 2023 · 3 citations
- Security Amplification via Robust Indistinguishability CombinersBenny Applebaum, Nir Bitansky, Nathan GeierCRYPTO 2026
