| M. Capalbo, O. Reingold, S. Vadhan, and A. Wigderson. Randomness conductors and constantdegree lossless expanders, STOC, 2002. |
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M. Capalbo, O. Reingold, S. Vadhan and A. Wigderson, Randomness Conductors and Constant-Degree Lossless Expanders, Extended Abstract, STOC 2002. Randomness Conductors and Constant-Degree Expansion Beyond the Degree/2 Barrier.
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M. Capalbo, O. Reingold, S. Vadhan, and A. Wigderson. Randomness conductors and constant-degree lossless expanders. In Proceedings of the 34th Annual ACM Symposium on Theory of Computing, pages 659--668, 2002.
....by Nisan and Zuckerman [14] extractors have played a fundamental and unifying role in the theory of pseudorandomness. In particular, it has been discovered that they are intimately related to a number of other important and widely studied objects, such as hash functions [9] expander graphs [14, 28, 18, 23, 4], samplers [7, 30] pseudorandom generators [26] and error correcting codes [26, 25, 24] In addition, extractors have been found to have a vast and ever growing collection of applications in diverse aspects of computational complexity, combinatorics, and cryptography. See the excellent surveys ....
M. Capalbo, O. Reingold, S. Vadhan, and A. Wigderson. Randomness conductors and constant-degree lossless expanders. In Proc. 34th STOC, pages 659--668, 2002.
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M. Capalbo, O. Reingold, S. Vadhan, and A. Wigderson. Randomness conductors and constantdegree lossless expanders, STOC, 2002.
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Michael Capalbo, Omer Reingold, Salil Vadhan, and Avi Wigderson. Randomness Conductors and Constant-Degree Lossless Expanders. STOC-CCC 2002.
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M. Capalbo, O. Reingold, S. Vadhan, and A. Wigderson, \Randomness conductors and constant-degree lossless expanders," in Proceedings of the 34th annual ACM symposium on Theory of computing, pp. 659-668, ACM Press, 2002.
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