Paper
10 July 2007 Sub-Doppler spectroscopy based on optical pumping and transit relaxation of atoms in a thin gas cell
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Abstract
The paper is the review of methods, achievements, and possibilities of the recently elaborated and well tested high-resolution laser spectroscopy based on sub-Doppler absorption and polarization resonances (on centers of quantum transitions), which arise because of the optical pumping and specific transit relaxation of atoms (molecules) in a thin cell with a rarefied gas. Theoretical basis of this spectroscopy is presented. Experimental technique and results on the record of the sub-Doppler spectral structure of Cs and Rb atoms and on the frequency stabilization of diode lasers by given spectroscopy methods are discussed.
© (2007) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Azad Ch. Izmailov "Sub-Doppler spectroscopy based on optical pumping and transit relaxation of atoms in a thin gas cell", Proc. SPIE 6727, ICONO 2007: Nonlinear Laser Spectroscopy and High-Precision Measurements; and Fundamentals of Laser Chemistry and Biophotonics, 67270B (10 July 2007); https://doi.org/10.1117/12.752243
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Cited by 7 scholarly publications.
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KEYWORDS
Chemical species

Optical pumping

Absorption

Spectroscopy

Cesium

Laser beam diagnostics

Rubidium

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