Realization of a bipolar atomic Solc filter in the cavity-QED microlaser
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Author(s) • • • • • • • •
Seo, Wontaek
Hong, Hyun-Gue
Song, Younghoon
Lee, Moonjoo
Chough, Young-Tak
Choi, Wonshik
Fang-Yen, Chris
Dasari, Ramachandra Rao
Feld, Michael S.
Date Issued
May 2010
Journal
Physical Review A
Publisher
American Physical Society
Citation
Seo, Wontaek. et al. "Realization of a biopolar atomic Solc filter in the cavity-QED microlaser." Physical Review A 81.5 (2010)" 053824. © 2010 The American Physical Society
Version
Final published version
Abstract
We report experimental realization of a rudimentary atomic Šolc filter, recently proposed by Hong et al. [Opt. Express 17, 15455 (2009)]. It is realized by employing a bipolar atom-cavity coupling constant in the cavity-QED microlaser operating with a TEM10 mode in a strong coupling regime. The polarity flip in the coupling constant dramatically changes the photoemission probability of a two-level atom relative to unipolar coupling, resulting in multiple narrow emission bands in the detuning curve of the microlaser mean photon number. The observed resonance curves are explained well by a two-step, three-dimensional, geodesic-like motion of the Bloch vector in the semiclassical limit.
MIT Department
Massachusetts Institute of Technology. Spectroscopy Laboratory
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DOI of Published Version
https://doi.org/10.1103/PhysRevA.81.053824