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Location Call # Volume Status
 E-BOOK      
Title Advances in Cryptology -- CRYPTO 2015 : 35th Annual Cryptology Conference, Santa Barbara, CA, USA, August 16-20, 2015, Proceedings, Part II / edited by Rosario Gennaro, Matthew Robshaw.
Edition First edition 2015.
OCLC 978-3-662-48000-7
ISBN 9783662480007
ISBN/ISSN 10.1007/978-3-662-48000-7 doi
Publisher Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer, 2015.
Description XVIII, 783 pages 76 illustrations : online resource.
text file PDF rda.
LC Subject heading/s Computer science.
Data protection.
Data encryption (Computer science)
Computer software.
Computational complexity.
Other
Subject heading/s
Computer Science.
Data Encryption.
Systems and Data Security.
Algorithm Analysis and Problem Complexity.
Discrete Mathematics in Computer Science.
Contents Lattice-based cryptography -- Cryptanalytic insights -- Modes and constructions -- Multilinear maps and IO -- Pseudorandomness -- Block cipher cryptanalysis -- Integrity -- Assumptions -- Hash functions and stream cipher cryptanalysis -- Implementations -- Multiparty computation -- Zero-knowledge -- Theory -- Signatures -- Non-signaling and information-theoretic crypto -- Attribute-based encryption -- New primitives -- Fully homomorphic/functional encryption.
Summary The two volume-set, LNCS 9215 and LNCS 9216, constitutes the refereed proceedings of the 35th Annual International Cryptology Conference, CRYPTO 2015, held in Santa Barbara, CA, USA, in August 2015. The 74 revised full papers presented were carefully reviewed and selected from 266 submissions. The papers are organized in the following topical sections: lattice-based cryptography; cryptanalytic insights; modes and constructions; multilinear maps and IO; pseudorandomness; block cipher cryptanalysis; integrity; assumptions; hash functions and stream cipher cryptanalysis; implementations; multiparty computation; zero-knowledge; theory; signatures; non-signaling and information-theoretic crypto; attribute-based encryption; new primitives; and fully homomorphic/functional encryption.
Restrictions Unlimited user license access.
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