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This article is cited in 22 scientific papers (total in 22 papers)
OPTICS AND NUCLEAR PHYSICS
Selective reflection from Rb vapor in half- and quarter-wave cells: Features and possible applications
A. Sargsyana, E. Klingerb, Y. Pashayan-Leroyb, C. Leroyb, A. Papoyana, D. G. Sarkisyana a Institute for Physical Research, National Academy of Sciences of Armenia, Ashtarak-2, Armenia
b Laboratoire Interdisciplinaire Carnot de Bourgogne, UMR CNRS 6303, Université de Bourgogne-Franche-Comté, Dijon Cedex, France
Abstract:
The features of the effect of selective reflection from rubidium vapor in a nanocell with the thickness $L\approx\lambda/2$ and $L\approx\lambda/4$, where $\lambda = 795$ nm is the wavelength of laser radiation resonant with the Rb $D_1$ line, are studied. It is shown that, because of the behavior of the nanocell as a low-$Q$-factor Fabry–Pérot etalon, the sign of the derivative of the selective reflection spectra changes near $L\approx\lambda/2$ from negative at $L>\lambda/2$ to positive at $L<\lambda/2$. The simplicity of the experimental implementation, large amplitude, and sub-Doppler width ($40$MHz) of a detected signal at an atomic transition frequency are appropriate for applications in metrology and magnetometry. In particular, selective reflection from the nanocell is a convenient frequency marker of atomic transitions; in this case, the amplitudes of peaks are proportional to the transition probabilities. The remote optical monitoring of a magnetic field with a spatial resolution $L=\lambda/4\approx199$ of nm is possible on the basis of the splitting of selective reflection peaks in a strong magnetic field (up to $3$ kG). A theoretical model describes well the experimental results.
Received: 21.06.2016
Citation:
A. Sargsyan, E. Klinger, Y. Pashayan-Leroy, C. Leroy, A. Papoyan, D. G. Sarkisyan, “Selective reflection from Rb vapor in half- and quarter-wave cells: Features and possible applications”, Pis'ma v Zh. Èksper. Teoret. Fiz., 104:4 (2016), 222–228; JETP Letters, 104:4 (2016), 224–230
Linking options:
https://www.mathnet.ru/eng/jetpl5038 https://www.mathnet.ru/eng/jetpl/v104/i4/p222
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