Electromagnetically Induced Transparency in Potassium Vapors: Features and Restrictions


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Resumo

Features of electromagnetically induced transparency (EIT) in potassium vapors at the D1 line of the 39K isotope are studied. EIT resonances with a subnatural width of 3.5 MHz have been recorded upon excitation by two independent narrow-band diode lasers in a 1-cm-long cell filled with a natural mixture of potassium isotopes and buffer gas. The splitting of EIT resonances in potassium vapors in longitudinal and transverse magnetic fields has been studied for the first time. The splitted components also have a subnatural width. The smallness of the coupling factor of the hyperfine structure in 39K atoms leads to a transition to the Paschen—Back regime at relatively weaker magnetic fields than in the case of Cs, Rb, and Na atoms. Practical applications of the phenomena under study are noted. The theoretical model well explains the experiment.

Sobre autores

A. Sargsyan

Institute for Physical Research

Autor responsável pela correspondência
Email: tigran@vartanyan.com
Armênia, Ashtarak-2, 0203

P. Petrov

St. Petersburg State University of Information Technologies, Mechanics, and Optics

Email: tigran@vartanyan.com
Rússia, St. Petersburg, 197101

T. Vartanyan

St. Petersburg State University of Information Technologies, Mechanics, and Optics

Email: tigran@vartanyan.com
Rússia, St. Petersburg, 197101

D. Sarkisyan

Institute for Physical Research

Email: tigran@vartanyan.com
Armênia, Ashtarak-2, 0203

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