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Atom-surface interaction at the nanometre scale: van der Waals-Zeeman transitions in a magnetic field
Journal article   Peer reviewed

Atom-surface interaction at the nanometre scale: van der Waals-Zeeman transitions in a magnetic field

M. Hamamda, M. Boustimi, V. Bocvarski, T. Taillandier-Loize, G. Dutier, F. Perales, J. Baudon and M. Ducloy
Europhysics letters, Vol.98(2), p.23001
04/2012

Abstract

03.75.Be 12.20.Fv 34.35.+a
van der Waals-Zeeman transitions between magnetic states of metastable rare-gas atoms Ar*, Kr* and Xe* (3P2) induced by a solid surface in the presence of a magnetic field, are investigated theoretically and experimentally. By use of a Zeeman slower, metastable argon atoms with various velocities ranging from 170 to 560 m/s allow us to investigate the small impact parameter range (3–7 nm) within which these transitions occur, as well as the effect of atom polarisation on the sharing out of the M states.

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