DocumentCode
2732848
Title
Entropy waves, the zig-zag graph product, and new constant-degree expanders and extractors
Author
Reingold, Omer ; Vadhan, Salil ; Wigderson, Avi
Author_Institution
AT&T Labs.-Res., Florham Park, NJ, USA
fYear
2000
fDate
2000
Firstpage
3
Lastpage
13
Abstract
The main contribution is a new type of graph product, which we call the zig-zag product. Taking a product of a large graph with a small graph, the resulting graph inherits (roughly) its size from the large one, its degree from the small one, and its expansion properties from both. Iteration yields simple explicit constructions of constant-degree expanders of every size, starting from one constant-size expander. Crucial to our intuition (and simple analysis) of the properties of this graph product is the view of expanders as functions which act as “entropy wave” propagators-they transform probability distributions in which entropy is concentrated in one area to distributions where that concentration is dissipated. In these terms, the graph product affords the constructive interference of two such waves. A variant of this product can be applied to extractors, giving the first explicit extractors whose seed length depends (poly)logarithmically on only the entropy deficiency of the source (rather than its length) and that extract almost all the entropy of high min-entropy sources. These high min-entropy extractors have several interesting applications, including the first constant-degree explicit expanders which beat the “eigenvalue bound”
Keywords
eigenvalues and eigenfunctions; entropy; graph theory; probability; constant-degree expanders; constant-degree extractors; constructive interference; eigenvalue bound; entropy waves; explicit extractors; high min-entropy sources; probability distributions; zig-zag graph product; Codes; Complexity theory; Computer science; Cryptography; Eigenvalues and eigenfunctions; Entropy; Graph theory; Mathematics; Polynomials; Probability distribution;
fLanguage
English
Publisher
ieee
Conference_Titel
Foundations of Computer Science, 2000. Proceedings. 41st Annual Symposium on
Conference_Location
Redondo Beach, CA
ISSN
0272-5428
Print_ISBN
0-7695-0850-2
Type
conf
DOI
10.1109/SFCS.2000.892006
Filename
892006
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