Journalartikel

Polarized light emission in keV He2++Na(3s) collisions


AutorenlisteSchippers, S; Boduch, P; Vanbuchem, J; Bliek, FW; Hoekstra, R; Morgenstern, R; Olson, RE

Jahr der Veröffentlichung1995

Seiten3271-3282

ZeitschriftJournal of Physics B: Atomic, Molecular and Optical Physics

Bandnummer28

Heftnummer15

ISSN0953-4075

eISSN1361-6455

DOI Linkhttps://doi.org/10.1088/0953-4075/28/15/017

VerlagIOP Publishing


Abstract

We investigated l- and m-distributions of He Pi (n=4) states formed during 2-13.3 keV amu-1 He2++Na(3s) collisions by measuring profiles and the linear polarization of the He Pi (4 to 3) emission. We found that at these energies capture into He+(4f) dominates over capture into other He+(4l) states. Over the indicated energy range the polarization of the 4He Pi (4 to 3) photon emission increases from 0.2 to 0.3 indicating a strong alignment of the captured projectile charge cloud along the internuclear axis. Due to the non-zero nuclear spin the polarization is up to 10% lower when using 3He2+ projectiles instead of 4He2+. Classical trajectory Monte Carlo calculations agree quantitatively with these experimental findings and predict a decrease of the polarization towards zero at higher energies due to enhanced capture into He+(4s). A positive polarization is also found for the Na I (3p to 3s) target de-excitation. However, due to strong depolarization effects caused by the nuclear spin of the 23Na nucleus it stays below 0.14.




Zitierstile

Harvard-ZitierstilSchippers, S., Boduch, P., Vanbuchem, J., Bliek, F., Hoekstra, R., Morgenstern, R., et al. (1995) Polarized light emission in keV He2++Na(3s) collisions, Journal of Physics B: Atomic, Molecular and Optical Physics, 28(15), pp. 3271-3282. https://doi.org/10.1088/0953-4075/28/15/017

APA-ZitierstilSchippers, S., Boduch, P., Vanbuchem, J., Bliek, F., Hoekstra, R., Morgenstern, R., & Olson, R. (1995). Polarized light emission in keV He2++Na(3s) collisions. Journal of Physics B: Atomic, Molecular and Optical Physics. 28(15), 3271-3282. https://doi.org/10.1088/0953-4075/28/15/017


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