An experimental setup to generate narrowband bi-photons via four-wave mixing in cold atoms
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Published:2022-04-05
Issue:3 May-Jun
Volume:68
Page:
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ISSN:2683-2224
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Container-title:Revista Mexicana de Física
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language:
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Short-container-title:Rev. Mex. Fís.
Author:
Arias-Tellez N.,Angeles-Aguillón I. F.,Martínez-Cara D.,Martínez-Vallejo A.,Villegas Aguilar L. Y.,Mendoza-López L. A.,Torres Y. M.,Gutiérrez-Arenas R. A.,Jáuregui R.,Pérez-Castillo I.,Ceré A.,Sahagún Sánchez Daniel
Abstract
We present our recently-built experimental setup designed to generate near-infrared and narrow-band correlated photon pairs by inducingfour-wave mixing in a cold gas of 87Rb atoms confined in a magneto-optical trap. The experimental setup and its automation and control approach are described in detail. A characterization of the optical density of the atomic ensemble as well as the basic statistical measurements of the generated light are reported. The non-classical nature of the photons pairs is confirmed by observing a violation of Cauchy-Schwarz inequality by a factor of 5.6 × 10 5 in a Hanbury Brown – Twiss interferometer. A 1/e coherence time for the heralded, idler photons of 4.4 ± 0.1 ns is estimated from our observations. We are able to achieve a value of 104 s−1pair-detection-rate, which results in a spectral brightness of 280 (MHz s)−1. The combination of high brightness and narrow-band spectrum makes this photon-pair source a viable tool in fundamental studies of quantum states and opens the door to use them in quantum technologies.
Publisher
Sociedad Mexicana de Fisica A C
Subject
General Physics and Astronomy,Education
Cited by
1 articles.
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