Two-Source and Affine Non-Malleable Extractors for Small Entropy
Xin Li, Yan Zhong

TL;DR
This paper introduces explicit constructions of two-source and affine non-malleable extractors for small entropy sources, matching the best parameters of standard extractors and improving previous results significantly.
Contribution
It presents the first explicit constructions of non-malleable extractors for small entropy sources that match the parameters of standard extractors, with implications for computational complexity.
Findings
Constructed non-malleable extractors for sources with min-entropy $k \,\ge\, \log^C n$
Achieved extractor parameters with min-entropy $k = O(\log n)$ and constant error
Provided strong lower bounds for read-once linear branching programs
Abstract
Non-malleable extractors are generalizations and strengthening of standard randomness extractors, that are resilient to adversarial tampering. Such extractors have wide applications in cryptography and explicit construction of extractors. In the well-studied models of two-source and affine non-malleable extractors, the previous best constructions only work for entropy rate and respectively by Li (FOCS' 23). We present explicit constructions of two-source and affine non-malleable extractors that match the state-of-the-art constructions of standard ones for small entropy. Our main results include two-source and affine non-malleable extractors (over ) for sources on bits with min-entropy and polynomially small error, matching the parameters of standard extractors by Chattopadhyay and Zuckerman (STOC' 16, Annals of Mathematics' 19) and…
Peer Reviews
No public reviews on file for this paper yet. If you reviewed it on a platform where reviews are public (OpenReview, ICLR, NeurIPS, ICML), you can paste yours below so the community can read it here.
Videos
No videos yet. Explain this paper in a talk, walkthrough, or lecture? Add one.
