Quantum key distribution with a single photon from a squeezed coherent state

Masahiro Matsuoka and Takuya Hirano
Phys. Rev. A 67, 042307 – Published 15 April 2003
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Abstract

Squeezing of the coherent state by optical parametric amplifier is shown to efficiently produce single-photon states with reduced multiphoton probabilities compared with the weak coherent light. It can be a better source for a longer-distance quantum key distribution and also for other quantum optical experiments. The necessary condition for a secure quantum key distribution given by Brassard et al. is analyzed as functions of the coherent-state amplitude and squeeze parameter. Similarly, the rate of the gained secure bits G after error correction and privacy amplification given by Lütkenhaus is calculated. Compared with the weak coherent light, it is found that G is about ten times larger and its high level continues on about two times longer distance. By improvement of the detector efficiency it is shown that the distance extends further. Measurement of the intensity correlation function and the relation to photon antibunching are discussed for the experimental verification of the single-photon generation.

  • Received 6 August 2002

DOI:https://doi.org/10.1103/PhysRevA.67.042307

©2003 American Physical Society

Authors & Affiliations

Masahiro Matsuoka1,2 and Takuya Hirano1

  • 1Department of Physics, Gakushuin University, 1-5-1 Mejiro, Toshima-ku, Tokyo, Japan
  • 2Communications Research Laboratory, 4-2-1 Nukui-Kitamachi, Koganei, Tokyo, Japan

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Issue

Vol. 67, Iss. 4 — April 2003

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