arXiv · 1002.2436
Leftover Hashing Against Quantum Side Information
Abstract
The Leftover Hash Lemma states that the output of a two-universal hash function applied to an input with sufficiently high entropy is almost uniformly random. In its standard formulation, the lemma refers to a notion of randomness that is (usually implicitly) defined with respect to classical side information. Here, we prove a (strictly) more general version of the Leftover Hash Lemma that is valid even if side information is represented by the state of a quantum system. Furthermore, our result applies to arbitrary delta-almost two-universal families of hash functions. The generalized Leftover Hash Lemma has applications in cryptography, e.g., for key agreement in the presence of an adversary who is not restricted to classical information processing.
Explore related subjects
Keep this discovery
Marco Tomamichel, Christian Schaffner, Adam Smith, Renato Renner. 2010-02-12. Leftover Hashing Against Quantum Side Information. https://doi.org/10.1109/tit.2011.2158473
Cite the original work for its findings. Save a collection to share your selection of sources.