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- W2010343339 abstract "We demonstrate an atomic-beam approach to obtaining isotope specific driven-atom spectra using samples of arbitrary isotopic composition. The method employs modulation of a target isotope ground-state population by an upstream preparation laser. Desired driven-atom signals generated downstream from the preparation laser are isolated using a lock-in amplifier referenced to the preparation laser modulation frequency. In our experiments, an intensity-modulated laser resonant with the barium ${(6s}^{2}{)}^{1}{S}_{0}{ensuremath{-}(6s6p)}^{3}{P}_{1}$ 791.1-nm intercombination transition selectively pumps ${}^{138}mathrm{Ba}$ atoms via radiative decays to the ${(6s5d)}^{3}{D}_{1,2}$ metastable states. Dressed-atom gain studies using the ${(6s}^{2}{)}^{1}{S}_{0}{ensuremath{-}(6s6p)}^{1}{P}_{1}$ 553.5-nm transition demonstrate the efficacy of the method. This technique has general utility for selectively isolating specific isotopic signals in systems possessing optically controllable atomic-beam populations." @default.
- W2010343339 created "2016-06-24" @default.
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- W2010343339 date "2000-03-17" @default.
- W2010343339 modified "2023-09-23" @default.
- W2010343339 title "Laser modulation technique for single isotope spectroscopic studies" @default.
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- W2010343339 doi "https://doi.org/10.1103/physreva.61.041404" @default.
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