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- W2888870426 abstract "The intensity distribution in the core region of the Lyman-$ensuremath{alpha}$ line of hydrogen perturbed by neutral hydrogen atoms in the presence of an external cone-rotating electric field has been evaluated using an impact approximation. It was found that the line shape in this region can be described as the sum of four Lorentzian profiles representing contributions coming from transitions between various Stark and Berry sublevels of the resonance and ground states of the hydrogen atom. The effects due to Berry's phase are shown to produce a Lorentzian-shaped feature on each side of the Lyman-$ensuremath{alpha}$ line, with maxima located at frequencies linearly dependent on the angular frequency with which the electric field rotates about the laboratory fixed $z$ axis, as well as on the cosine of the polar angle that the field makes with respect to this axis. The remaining two Lorentzian profiles are due to the Stark effect, and their maxima are located on both sides of the Lyman-$ensuremath{alpha}$ line at frequencies corresponding to the Stark shift." @default.
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- W2888870426 date "2018-08-31" @default.
- W2888870426 modified "2023-10-17" @default.
- W2888870426 title "Inclusion of Berry's phase into an impact treatment of self-broadening of the Lyman- α line in an external slowly rotating electric field" @default.
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- W2888870426 doi "https://doi.org/10.1103/physreva.98.023430" @default.
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