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-List Of Titles -Efficient extension of standard Schnorr/RSA signature into Universal Designated-Verifier Signatures

Please use this identifier to cite or link to this item: http://hdl.handle.net/1959.14/116469

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Title
Efficient extension of standard Schnorr/RSA signature into Universal Designated-Verifier Signatures
Related
International Workshop on Practice and Theory in Public Key Cryptography (7th : 2004) (1 - 4 March 2004 : Singapore)
Related
Bao, Feng; Deng, Robert and Zhou, Jianying. Public key cryptography - PKC 2004 : 7th International Workshop on theory and practice in Public Key Cryptography, Singapore, March 1-4, 2004 : proceedings, p.86-100
DOI
10.1007/978-3-540-24632-9_7
Related
Lecture notes in computer science Vol. 2947
Publisher
New York : Springer-Verlag
Date
2004
FoR/RFCD Code(s)
080300 Computer Software
Author/Creator
Steinfeld, Ron
Author/Creator
Wang, Huaxiong
Author/Creator
Pieprzyk, Josef
Description
Universal Designated-Verifier Signature (UDVS) schemes are digital signature schemes with additional functionality which allows any holder of a signature to designate the signature to any desired designated-verifier such that the designated-verifier can verify that the message was signed by the signer, but is unable to convince anyone else of this fact. Since UDVS schemes reduce to standard signatures when no verifier designation is performed, it is natural to ask how to extend the classical Schnorr or RSA signature schemes into UDVS schemes, so that the existing key generation and signing implementation infrastructure for these schemes can be used without modification. We show how this can be efficiently achieved, and provide proofs of security for our schemes in the random oracle model.
Description
15 page(s)
Subject Keyword
080300 Computer Software
Resource Type
conference paper
Organisation
Macquarie University. Dept. of Computing

Identifier
http://hdl.handle.net/1959.14/116469
Identifier
ISBN:3540210180
Identifier
mq-rm-2004021413
Language
eng
Reviewed
Reviewed
Save/E-mail Citation
Citation Format
E-mail Address
Subject
"Public key cryptography - PKC 2004 : 7th International Workshop on theory and practice in Public Key Cryptography, Singapore, March 1-4, 2004 : proceedings"
 
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080300 Computer Software
Pieprzyk, Josef

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