DocumentCode :
1850026
Title :
Differential phase shift quantum key distribution
Author :
Takesue, Hiroki ; Honjo, Toshimori ; Tamaki, Kiyoshi ; Tokura, Yasuhiro
Author_Institution :
NTT Basic Res. Labs., NTT Corp., Atsugi
fYear :
2008
fDate :
12-13 May 2008
Firstpage :
229
Lastpage :
236
Abstract :
Quantum key distribution (QKD) has been studied as an ultimate method for secure communications, and it now is emerging as a technology that can be deployed in real fibre networks. Here, we present our QKD experiments based on the differential phase shift QKD (DPS-QKD) protocol. A DPS-QKD system has a simple configuration that is easy to implement with conventional optical communication components, and it is suitable for a high clock rate system. Moreover, although the DPS-QKD system is implemented with an attenuated laser source, it is inherently secure against strong eavesdropping attacks called photon number splitting attacks, which pose a serious threat to conventional QKD systems with attenuated laser sources. We also describe three types of single photon detectors that are suitable for high-speed, long-distance QKD: an up- conversion detector, a superconducting single photon detector, and a sinusoidally gated InGaAs avalanche photodiode. We present our record setting QKD experiments that employed those detectors.
Keywords :
III-V semiconductors; avalanche photodiodes; differential phase shift keying; gallium arsenide; indium compounds; lasers; optical fibre networks; protocols; quantum cryptography; InGaAs; avalanche photodiode; communications security; differential phase shift keying; fibre networks; laser sources; optical communication components; photon number splitting attacks; protocol; quantum key distribution; single photon detectors; superconducting single photon; Clocks; Cryptographic protocols; Detectors; Indium gallium arsenide; Information security; Laboratories; Optical fiber communication; Public key cryptography; Quantum computing; Quantum mechanics; Cryptography; Differential phase shift keying; Security;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Innovations in NGN: Future Network and Services, 2008. K-INGN 2008. First ITU-T Kaleidoscope Academic Conference
Conference_Location :
Geneva
Print_ISBN :
978-92-61-12441-0
Type :
conf
DOI :
10.1109/KINGN.2008.4542270
Filename :
4542270
Link To Document :
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