Non-adiabatic 2s-2p state mixing in metastable hydrogen by electric fields
Brouillard, F.;Van Wassenhove, G.
(1974) Journal of Physics B: Atomic and Molecular Physics — Vol. 7, n° 17, p. 2308-2314 (1974)
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Authors
Brouillard, F.
Author
Van Wassenhove, G.
Author
Abstract
The evolution of a (/b n/=2) hydrogen atom passing through a linearly increasing or decreasing electric field is calculated in a three-state approximation. The observable fraction of 2p/sub 1/2/, 2s/sub 1/2/ and 2p/sub 3/2/ quantum state in the resulting coherent mixture is calculated. The amplitude of the oscillations, which appear when the field parameters are varied, is shown to depend only on the rate of change of the field, as seen by the atom. Maps of oscillation amplitudes and average values are given for the metastable atom. Comparison is made with the sudden and adiabatic approximations.
Brouillard, F., & Van Wassenhove, G. (1974). Non-adiabatic 2s-2p state mixing in metastable hydrogen by electric fields. Journal of Physics B: Atomic and Molecular Physics, 7(17), 2308-2314. https://doi.org/10.1088/0022-3700/7/17/015 (Original work published 1974)