Abstract
In this paper, our recent works on the alkali atoms in superfluid helim (HeII) are reported. At first we mentions the laser-sputtering method for implantation, which is simple but is very efficient to produce various kinds of neutral atoms and molecules in HeII. Secondly, we report on the laser spectroscopy of alkali atoms in HeII. Optical excitation and emission spectra are found to be roughly explained by a spherical atomic bubble model, but the spectra corresponding to the D2 lines indicate the quadrupole oscillation of the bubble shape. Optical pumping by a circularly polarized laser beam is found to produce perfect polarization, for both electron and nuclear spins. Using the rf-optical double resonance techniques, the magnetic and hyperfine resonances are observed. It is discussed also about the phenomena which have observed in the experiments done so far but have not been fully explained.
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Yabuzaki, T., Kinoshita, T., Fukuda, K. et al. Laser spectroscopy and optical pumping of alkali atoms in superfluid helium. Z. Physik B - Condensed Matter 98, 367–369 (1995). https://doi.org/10.1007/BF01338407
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DOI: https://doi.org/10.1007/BF01338407