Publications
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Author:
Cederlöf, Jörgen (Linköping University, Department of Mathematics)
Title:
Authentication in quantum key growing
Department:
Linköping University, Department of Mathematics
Publication type:
Student thesis
Language:
English
Publisher:
Matematiska institutionen
Level:
Independent thesis Basic level (professional degree)
University points:
20 points / 30 hp
Pages:
51
Year of publ.:
2005
URI:
urn:nbn:se:liu:diva-3214
Permanent link:
http://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-3214
ISRN:
LITH-MAT-EX--05/18--SE
Subject category:
Applied mathematics
Undergraduate subject:
Applied Mathematics
Uppsok:
fysik/kemi/matematik
Keywords(en) :
Quantum key growing, Quantum key generation, Quantum key distribution, Quantum cryptography, Message authentication, Unconditional security, Rényi entropy.
Abstract(en) :

Quantum key growing, often called quantum cryptography or quantum key distribution, is a method using some properties of quantum mechanics to create a secret shared cryptography key even if an eavesdropper has access to unlimited computational power. A vital but often neglected part of the method is unconditionally secure message authentication. This thesis examines the security aspects of authentication in quantum key growing. Important concepts are formalized as Python program source code, a comparison between quantum key growing and a classical system using trusted couriers is included, and the chain rule of entropy is generalized to any Rényi entropy. Finally and most importantly, a security flaw is identified which makes the probability to eavesdrop on the system undetected approach unity as the system is in use for a long time, and a solution to this problem is provided.

Supervisor:
Larsson, Jan-Åke (Linköping University, Department of Mathematics)
Examiner:
Larsson, Jan-Åke (Linköping University, Department of Mathematics)
Available from:
2005-09-01
Created:
2005-09-01
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