DocumentCode
14962
Title
Secure optical networks based on quantum key distribution and weakly trusted repeaters
Author
Elkouss, David ; Martinez-Mateo, Jesus ; Ciurana, Alex ; Martin, Vicente
Author_Institution
Res. Group on Quantum Inf. & Comput., Univ. Politec. de Madrid, Madrid, Spain
Volume
5
Issue
4
fYear
2013
fDate
Apr-13
Firstpage
316
Lastpage
328
Abstract
In this paper we explore how recent technologies can improve the security of optical networks. In particular, we study how to use quantum key distribution (QKD) in common optical network infrastructures and propose a method to overcome its distance limitations. QKD is the first technology offering information theoretic secret-key distribution that relies only on the fundamental principles ofquantum physics. Point-to-point QKD devices have reached a mature industrial state; however, these devices are severely limited in distance, since signals at the quantum level (e.g., single photons) are highly affected by the losses in the communication channel and intermediate devices. To overcome this limitation, intermediate nodes (i.e., repeaters) are used. Both quantum-regime and trusted, classical repeaters have been proposed in the QKD literature, but only the latter can be implemented in practice. As a novelty, we propose here a new QKD network model based on the use of not fully trusted intermediate nodes, referred to as weakly trusted repeaters. This approach forces the attacker to simultaneously break several paths to get access to the exchanged key, thus improving significantly the security of the network. We formalize the model using network codes and provide real scenarios that allow users to exchange secure keys over metropolitan optical networks using only passive components. Moreover, the theoretical framework allows one to extend these scenarios not only to accommodate more complex trust constraints, but also to consider robustness and resiliency constraints on the network.
Keywords
network coding; optical fibre networks; optical repeaters; quantum cryptography; telecommunication channels; telecommunication security; communication channel; complex trust constraint; distance limitation; information theoretic secret-key distribution; intermediate node; metropolitan optical network; network code; optical network security; point-to-point QKD device; quantum key distribution; quantum physics; resiliency constraint; secure keys exchange; weakly trusted repeater; Network coding; Passive optical networks; Quantum key distribution; Trusted repeaters;
fLanguage
English
Journal_Title
Optical Communications and Networking, IEEE/OSA Journal of
Publisher
ieee
ISSN
1943-0620
Type
jour
DOI
10.1364/JOCN.5.000316
Filename
6496227
Link To Document