Internal Energy-distribution in Na2+ Ions Formed Through Associative Ionization As Probed By Photofragmentation

Urbain, Xavier;Blange, JJ.;Dijkerman, HA.;Rudolph, H.;Heideman, HGM.
(1994) Journal of Physics B: Atomic, Molecular and Optical Physics — Vol. 27, n° 11, p. L245-L250 (1994)

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  • Blange, JJ.
    Author
  • Dijkerman, HA.
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  • Rudolph, H.
    Author
  • Heideman, HGM.
    Author
Abstract
Using a new approach we have determined the internal (vibrational) energy distribution of the molecular ions formed in the collisional associative ionization (AI) between thermal Na*(3p) atoms. The method is based on the wavelength dependent measurement of the Na+ ions formed in the photodissociation of the Na2+ ions. We find that them is a substantial vibrational excitation and even a population inversion, with the upsilon = 2 to 4 levels predominantly populated. These findings are in good agreement with previous experimental results obtained through electron detection, and with the detailed ab initio calculations by Dulieu et al. The present method should prove itself suitable under conditions where other methods are difficult to apply, e.g. in collisions between cold atoms.
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Urbain, X., Blange, JJ., Dijkerman, HA., Rudolph, H., & Heideman, HGM. (1994). Internal Energy-distribution in Na2+ Ions Formed Through Associative Ionization As Probed By Photofragmentation. Journal of Physics B: Atomic, Molecular and Optical Physics, 27(11), L245-L250. https://doi.org/10.1088/0953-4075/27/11/003 (Original work published 1994)