| Secure names for bit-strings |
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Conference on Computer and Communications Security
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Proceedings of the 4th ACM conference on Computer and communications security
table of contents
Zurich, Switzerland
Pages: 28 - 35
Year of Publication: 1997
ISBN:0-89791-912-2
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| Bibliometrics |
Downloads (6 Weeks): 42, Downloads (12 Months): 62, Citation Count: 2
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REFERENCES
Note: OCR errors may be found in this Reference List extracted from the full text article. ACM has opted to expose the complete List rather than only correct and linked references.
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BHS 93
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D. Bayer, S. Haber, and W.S. Stornetta. Improving the efficiency and reliability of digital time-stamping. In Sequences II: Methods in Communication, Security, and Computer Science, ed. R.M. Capocelli, A. De Santis, U. Vaccaro, pp. 329-334, Springer-Verlag, New York (1993).
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BKR 94
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BY 90
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BD+ 95
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Shirley Browne , Jack Dongarra , Stan Green , Keith Moore , Theresa Pepin , Tom Rowan , Reed Wade , Eric Grosse, Location-Independent Naming for Virtual Distributed Software Repositories, University of Tennessee, Knoxville, TN, 1995
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Dam 87
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I. Damg~rd. Collision-free hash functions and public-key signature schemes. In Advances in Cryptology--Eurocrypt '87, Lecture Notes in Computer Science, Vol. 304, pp. 203-217, Springer-Verlag (Berlin, 1988).
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Dob 96a
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Dob 96b
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H. Dobbertin. Cryptanalysis of MD5 compress. Private communication (May 1996). Described by B. Preneel, Rump Session, Eurocrypt '96 (May 1996).
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Dob 96c
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H. Dobbertin. The status of MD5 after a recent attack. CrytoBytes, Vol. 2, No. 2 (Summer 1996).
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DBP 96
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HKS 95
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S. Haber, B. Kaliski, and W.S. Stornetta. How do digital time-stamps support digital signatures? CryptoBytes, Vol. 1, No. 3 (Autumn 1995). (Available at http://w~.rsa.com/ rsal abs/pubs / crypt obyt es. html. )
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HS 91
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S. Haber and W.S. Stornetta. How to timestamp a digital document. Journal of Cryptol. ogy, Vol. 3, No. 2, pp. 99-111 (1991).
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KW 95
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R. Kahn and R. Wilensky. A framework for distributed digital object services. Corporation for National Research Initiatives technical report cnri.dlib/tn95-01 (May 1995). (AvaUablc at http://w~w, cnri .reston. va. us/.)
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Lev 85
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Merk 80
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R.C. Merkle. Protocols for public key cryptosystems, in Proc. 1980 Symposium on Se. curity and Privacy, IEEE Computer Society, pp. 122-133 (April 1980).
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M 94
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J.W. Moore. The use of encryption to ensure the integrity of reusable software components. In Proc. 3rd International Conf. on Software Reusability, IEEE Computer Society Press (November 1994).
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NIST 94
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National Institute of Standards and Technology. Secure Hash Standard. NIST Federal Information Processing Standard Publication 180-1 (May 1994).
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Odl 95
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A. Odlyzko. The future of integer factorizalion. CrytoBytes, Vol. 1, No. 2 (1995).
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Pre 93
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B. Preneel. Analysis and Design o.f Cryptographic Hash Functions. Ph.D. dissertation, Katholieke Universiteit Leuven (January 1993).
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Riv 92
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R. Rivest. The MD5 Message-Digest Algorithm, internet Network Working Group Request for Comments 1321 (April 1992).
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R 95
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SM 94
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K. Sollins and L. Masinter. Functional requirements for Uniform Resource Names. Internet Network Working Group Request for Comments 1737 (December 1994).
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Sur 95
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Surety Technologies, Inc. Answers to Frequently Asked Questions about the Digital NotaryTM System. http://~.surety.com (since January 1995).
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CITED BY 2
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Stuart Haber , Yasuo Hatano , Yoshinori Honda , William Horne , Kunihiko Miyazaki , Tomas Sander , Satoru Tezoku , Danfeng Yao, Efficient signature schemes supporting redaction, pseudonymization, and data deidentification, Proceedings of the 2008 ACM symposium on Information, computer and communications security, March 18-20, 2008, Tokyo, Japan
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