1985•Journal of Physics B Atomic and Molecular PhysicsOpen access

Isotope shift and hyperfine structure in low-lying levels of molybdenum

Alfred T. Goble, C. W. P. Palmer

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Abstract

Isotope shifts and hyperfine structure in four transitions of Mo have been measured with a pressure-scanning Fabry-Perot interferometer. The isotope shifts have been combined with all other known isotope shifts in transitions connecting the 4d55s7S and5S and 4d45s25D levels with the 4d55p5P and7P levels in a multidimensional King plot. Values of delta (r2) from muonic-atom isotope shifts are used to separate mass and field shifts, giving improved values of delta (r2) for the isotope pairs, A, A'.

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Isotope shifts and hyperfine structure in four transitions of Mo have been measured with a pressure-scanning Fabry-Perot interferometer. The isotope shifts have been combined with all other known isotope shifts in transitions connecting the 4d55s7S and5S and 4d45s25D levels with the 4d55p5P and7P levels in a multidimensional King plot. Values of delta (r2) from muonic-atom isotope shifts are used to separate mass and field shifts, giving improved values of delta (r2) for the isotope pairs, A, A'.

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Available abstract

Isotope shifts and hyperfine structure in four transitions of Mo have been measured with a pressure-scanning Fabry-Perot interferometer. The isotope shifts have been combined with all other known isotope shifts in transitions connecting the 4d55s7S and5S and 4d45s25D levels with the 4d55p5P and7P levels in a multidimensional King plot. Values of delta (r2) from muonic-atom isotope shifts are used to separate mass and field shifts, giving improved values of delta (r2) for the isotope pairs, A, A'.

Key concepts: Isotope, Hyperfine structure, Isotopic shift, Kinetic isotope effect, Atomic physics, Molybdenum, Chemistry, Atom (system on chip)

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