DocumentCode
541989
Title
Chaotic quantum cryptography - The ultimate for network security
Author
Kartalopoulos, Stamatios
Author_Institution
Univ. of Oklahoma, Norman, OK, USA
fYear
2010
fDate
26-28 July 2010
Abstract
As the sophistication of intruders\´ increases, so does the incidents of information integrity breaches and network attacks. In response, very complex cryptographic processes have started being employed, such as chaos theory and quantum theory, in an effort to create the "holy grail" of cryptographic systems and network security. Quantum theory defines the non-classical qubit, which is the superposition of quantum states having no classical analog. It is also based on the "no cloning" and "no copying" theorem and on the Heisenberg\´s uncertainty. The quanto-mechanical properties of photons and the quantum mechanics provide a superb platform for communications security and particularly in secure optical communication networks, known as quantum cryptography and quantum networks, respectively. Chaos is based on the particular behavior of certain non-linear functions, which for a minute change of parameters produce a huge and unstable output, known as the "chaotic regime". However, this chaos can be reproducible, which makes it attractive to secure communications. Thus, the combined Chaos and Quantum theories play a synergistic role in the quest for the "holy grail" in communications security. In this talk we explain with simple examples quantum cryptography and protocols, as well as chaos and chaotic processes. We also describe the synergy of chaos and quantum theories as well as the increased efficiency and speed of the quantum key establishment.
Keywords
chaos; cryptographic protocols; optical communication; quantum cryptography; quantum theory; telecommunication security; chaos theory; communication security; holy grail; network security; quantum cryptography; quantum network; qubit; secure optical communication network; Chaotic communication; Conferences; Cryptography; Optical fiber communication; Quantum mechanics;
fLanguage
English
Publisher
ieee
Conference_Titel
Signal Processing and Multimedia Applications (SIGMAP), Proceedings of the 2010 International Conference on
Conference_Location
Athens
Electronic_ISBN
978-989-8425-19-5
Type
conf
Filename
5742523
Link To Document