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Low-light-level photon switching by quantum interference
Journal article   Peer reviewed

Low-light-level photon switching by quantum interference

Yong-Fan Chen, Zen-Hsiang Tsai, Yu-Chen Liu and Ite A. Yu
Optics Letters, Vol.30(23), pp.3207-3209
01/12/2005

Abstract

We report an experimental demonstration of low-light-level photon switching by quantum interference in laser-cooled 87 Rb atoms. A resonant probe pulse with an energy per unit area of one photon per λ 2 /2π propagates through the optically thick atoms. Its energy transmittance is greater than 63%, or a loss of less than e -1 , because of the effect of electromagnetically induced transparency. In the presence of a switching pulse with an energy per unit area of 1.4 photons per λ 2 / 2π, the energy transmittance of the same probe pulse becomes less than 37%, or e -1 . This substantial reduction of probe transmittance caused by switching photons may lead to potential applications in single-photon-level nonlinear optics and manipulation of quantum information. © 2005 Optical Society of America.

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