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Kvantovaya Elektronika, 2014 Volume 44, Number 11, Pages 1071–1076 (Mi qe16058)

Laser applications and other topics in quantum electronics

Coherent population trapping resonances at lower atomic levels of Doppler broadened optical lines

E. Şahina, G. Özenb, R. Hamida, M. Çelika, A. Ch. Izmaĭlovc

a National Metrology Institute of Turkey, Turkey
b Istanbul Technical University, Faculty of Science and Letters, Engineering Physics Department, Turkey
c Institute of Physics, Azerbaijan National Academy of Sciences, Baku, Azerbaijan

Abstract: We have detected and analysed narrow high-contrast coherent population trapping (CPT) resonances, which are induced in absorption of a weak monochromatic probe light beam by counterpropagating two-frequency pump radiation in a cell with rarefied caesium vapour. The experimental investigations have been performed by the example of nonclosed three level Λ-systems formed by spectral components of the D2 line of caesium atoms. The applied method allows one to analyse features of the CPT phenomenon directly at a given low long-lived level of the selected Λ-system even in sufficiently complicated spectra of atomic gases with large Doppler broadening. We have established that CPT resonances in transmission of the probe beam exhibit not only a higher contrast but also a much lesser width in comparison with well- known CPT resonances in transmission of the corresponding two-frequency pump radiation. The results obtained can be used in selective photophysics, photochemistry and ultra-high resolution atomic (molecular) spectroscopy.

Keywords: coherent population trapping, optical pumping, probe beam, sub-Doppler spectroscopy.

PACS: 42.50.Nn, 42.50.Gy

Received: 24.05.2014
Revised: 19.07.2014


 English version:
Quantum Electronics, 2014, 44:11, 1071–1076

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