Wir verwenden Cookies und Analyse-Tools, um die Nutzerfreundlichkeit der Internet-Seite zu verbessern und für Marketingzwecke. Wenn Sie fortfahren, diese Seite zu verwenden, nehmen wir an, dass Sie damit einverstanden sind. Zur Datenschutzerklärung.
Advances in Cryptology -- ASIACRYPT 2014
Details
The two-volume set LNCS 8873 and 8874 constitutes the refereed proceedings of the 20th International Conference on the Theory and Applications of Cryptology and Information Security, ASIACRYPT 2014, held in Kaoshiung, Taiwan, in December 2014. The 55 revised full papers and two invited talks presented were carefully selected from 255 submissions. They are organized in topical sections on cryptology and coding theory; authenticated encryption; symmetric key cryptanalysis; side channel analysis; hyperelliptic curve cryptography; factoring and discrete log; cryptanalysis; signatures; zero knowledge; encryption schemes; outsourcing and delegation; obfuscation; homomorphic cryptography; secret sharing; block ciphers and passwords; black-box separation; composability; multi-party computation.
Inhalt
Cryptology and coding theory.- Authenticated encryption.- Symmetric key cryptanalysis.- Side channel analysis.- Hyperelliptic curve cryptography.- Factoring and discrete log.- Cryptanalysis.- Signatures.- Zero knowledge.- Encryption schemes.- Outsourcing and delegation.- Obfuscation.- Homomorphic cryptography.- Secret sharing.- Block ciphers and passwords.- Black-box separation.- Composability.- Multi-party computation.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783662456071
- Editor Tetsu Iwata, Palash Sarkar
- Sprache Englisch
- Auflage 2014
- Größe H235mm x B155mm x T30mm
- Jahr 2014
- EAN 9783662456071
- Format Kartonierter Einband
- ISBN 3662456079
- Veröffentlichung 14.11.2014
- Titel Advances in Cryptology -- ASIACRYPT 2014
- Untertitel 20th International Conference on the Theory and Application of Cryptology and Information Security, Kaoshiung, Taiwan, China, December 7-11, 2014, Part II
- Gewicht 826g
- Herausgeber Springer Berlin Heidelberg
- Anzahl Seiten 552
- Lesemotiv Verstehen
- Genre Informatik