DocumentCode
1580013
Title
Performance of ½-rate convolutional code on Winnow protocol for quantum key reconciliation
Author
Treeviriyanupab, Patcharapong ; Sangwongngam, Paramin ; Sripimanwat, Keattisak ; Sangaroon, Ornlarp
Author_Institution
Dept. of Inf. Eng., King Mongkut´´s Inst. of Technol. Ladkrabang (KMITL), Bangkok, Thailand
fYear
2010
Firstpage
550
Lastpage
553
Abstract
The quantum key reconciliation is an essential step of Quantum Key Distribution (QKD) systems for correcting error in the raw keys which happens after the transmission over a quantum channel, where two legitimate parties make their correlated bits identical by exchanging messages over the public channel. This paper presents an alternative method for error correction of quantum key reconciliation by using ½-rate convolutional code, a class of forward error correcting (FEC) on Winnow for discrete-variable QKD protocol. The convolutional code can be applied to source coding with a side information problem which uses to describe quantum key reconciliation process. In the proposed scheme, it focuses on the performance evaluation of ½-rate convolutional code in quantum key reconciliation. In order to reduce an amount of interactive communication via error-free public channel for high-speed QKD applications, this proposed method is that the suitable solution.
Keywords
convolutional codes; cryptographic protocols; forward error correction; quantum cryptography; ½-rate convolutional code; Winnow protocol; discrete-variable QKD protocol; error correction; forward error correcting; interactive communication; quantum channel; quantum key distribution systems; quantum key reconciliation; Bit error rate; Convolutional codes; Cryptography; Decoding; Protocols; Simulation; Source coding;
fLanguage
English
Publisher
ieee
Conference_Titel
Communications and Information Technologies (ISCIT), 2010 International Symposium on
Conference_Location
Tokyo
Print_ISBN
978-1-4244-7007-5
Electronic_ISBN
978-1-4244-7009-9
Type
conf
DOI
10.1109/ISCIT.2010.5665052
Filename
5665052
Link To Document