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Secure names for bit-strings
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Source Conference on Computer and Communications Security archive
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
Authors
Stuart Haber  Surety Technologies, 1 Main Street, Chatham, N.J.
W. Scott Stornetta  Surety Technologies, 1 Main Street, Chatham, N.J.
Sponsor
SIGSAC: ACM Special Interest Group on Security, Audit, and Control
Publisher
ACM  New York, NY, USA
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.

 
BHS 93
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).
 
BKR 94
 
BY 90
 
BD+ 95
 
Dam 87
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).
 
Dob 96a
 
Dob 96b
H. Dobbertin. Cryptanalysis of MD5 compress. Private communication (May 1996). Described by B. Preneel, Rump Session, Eurocrypt '96 (May 1996).
 
Dob 96c
H. Dobbertin. The status of MD5 after a recent attack. CrytoBytes, Vol. 2, No. 2 (Summer 1996).
 
DBP 96
 
HKS 95
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. )
 
HS 91
S. Haber and W.S. Stornetta. How to timestamp a digital document. Journal of Cryptol. ogy, Vol. 3, No. 2, pp. 99-111 (1991).
 
KW 95
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/.)
Lev 85
 
Merk 80
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).
 
M 94
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).
 
NIST 94
National Institute of Standards and Technology. Secure Hash Standard. NIST Federal Information Processing Standard Publication 180-1 (May 1994).
 
Odl 95
A. Odlyzko. The future of integer factorizalion. CrytoBytes, Vol. 1, No. 2 (1995).
 
Pre 93
B. Preneel. Analysis and Design o.f Cryptographic Hash Functions. Ph.D. dissertation, Katholieke Universiteit Leuven (January 1993).
 
Riv 92
R. Rivest. The MD5 Message-Digest Algorithm, internet Network Working Group Request for Comments 1321 (April 1992).
 
R 95
 
SM 94
K. Sollins and L. Masinter. Functional requirements for Uniform Resource Names. Internet Network Working Group Request for Comments 1737 (December 1994).
 
Sur 95
Surety Technologies, Inc. Answers to Frequently Asked Questions about the Digital NotaryTM System. http://~.surety.com (since January 1995).


Collaborative Colleagues:
Stuart Haber: colleagues
W. Scott Stornetta: colleagues