Title :
Narrowband source of correlated photon pairs via four-wave mixing in a cold atomic ensemble
Author :
Srivathsan, Bharath ; Gulati, Gurpreet Kaur ; Brenda, Chng Mei Yuen ; Maslennikov, Gleb ; Matsukevich, Dzmitry ; Cere, Alessandro ; Kurtsiefer, Christian
Author_Institution :
Center for Quantum Technol., Singapore, Singapore
Abstract :
We report on a source of narrowband pairs of time-correlated photons generated via four-wave mixing in a laser-cooled atomic ensemble of 87Rb atoms. We employ a cascade decay level scheme in which two copropagating pump beams of 780nm and 776nm excite the atoms to the 5D3/2, F = 3 level and the photon pairs of wavelength 762nm and 795nm from the cascade decay are coupled into single mode fibers and sent to silicon avalanche photodetectors. The photodetection events exhibit a strong correlation in time (g(2)(τ = 0) ≈ 5800), and a high coupling efficiency, as indicated by a pair-to-single ratio of 23%. An instantaneous pair generation rate of 7700 pairs per second (uncompensated for optical losses and detector efficiency) is observed with an increased 776nm pump power of 14mW. The violation of the Cauchy-Schwarz inequality by a factor of 8.4 × 106 indicates a strong non-classical correlation between the generated fields, while a Hanbury-Brown-Twiss experiment in the individual photons reveals their thermal nature.
Keywords :
elemental semiconductors; laser cooling; multiwave mixing; optical correlation; optical fibres; optical losses; optical pumping; photodetectors; silicon; Cauchy-Schwarz inequality; Hanbury-Brown-Twiss experiment; Rb; Si; cascade decay level; four-wave mixing; instantaneous pair generation rate; laser-cooled atomic ensemble; narrowband source; optical coupling; optical losses; power 14 mW; pump beam propagation; silicon avalanche photodetectors; single mode fibers; strong nonclassical correlation; time-correlated photon pairs; wavelength 762 nm to 795 nm; Atomic beams; Correlation; Four-wave mixing; Narrowband; Photonics; Polarization; Quantum cascade lasers;
Conference_Titel :
Lasers and Electro-Optics Europe (CLEO EUROPE/IQEC), 2013 Conference on and International Quantum Electronics Conference
Conference_Location :
Munich
Print_ISBN :
978-1-4799-0593-5
DOI :
10.1109/CLEOE-IQEC.2013.6801634