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Quantum Cryptography for Multi-User Passive Optical Networks  (Make Corrections)  
P.D. Townsend, S.J.D. Phoenix, K.J. Blow, S.M. Barnett



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Abstract: Quantum cryptography has been shown to be an effective technique for the secure distribution of cryptographic keys on point-to-point communication links. Here, we describe adaptations of the existing quantum cryptography protocols and equipment configurations that allow secure key distribution to be performed on a variety of multiuser passive optical network (PON) architectures. These adaptations enable the network controller on the PON to distribute individual secret keys to each user on the... (Update)

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BibTeX entry:   (Update)

@misc{ townsend-quantum,
  author = "P.D. Townsend and S.J.D. Phoenix and K.J. Blow and S.M. Barnett",
  title = "Quantum Cryptography for Multi-User Passive Optical Networks",
  url = "citeseer.ist.psu.edu/14292.html" }
Citations (may not include all citations):
67   Experimental quantum cryptography - BENNETT, BESSETTE et al. - 1992
19   Quantum cryptography using any two nonorthogonal states (context) - BENNETT - 1992
6   Quantum cryptography or unforgeable subway tokens (context) - BENNETT, BRASSARD et al. - 1983
6   Secure key distribution system based on quantum cryptography (context) - TOWNSEND - 1994
5   Experimental demonstration of quantum cryptography using pol.. (context) - MULLER, BREGUET et al. - 1993
3   Photon counting using passively quenched germanium avalanche.. (context) - OWENS, RARITY et al.
2   Single photon interference in a 10km long optical fibre inte.. (context) - TOWNSEND, RARITY et al. - 1993

Documents on the same site (http://www.cs.mcgill.ca/~crepeau/CRYPTO/Biblio-QC.html):   More
Is Quantum Bit Commitment Really Possible? - Lo, Chau (1996)   (Correct)
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