1968•Physical Review LettersRequires access

Cross Section and Polarization of the Hα Line by Electron Impact Excitation

Hans Kleinpoppen, Eberhard Kraiss

Open publisher page 43 citations

Abstract

The modulated cross-beam technique has been used to measure the excitation function and the polarization of the Balmer-$\ensuremath{\alpha}$ line of atomic hydrogen excited by electron impact. Normalization of the ${\mathrm{H}}_{\ensuremath{\alpha}}$ excitation function to the Born approximation above 300 eV provides cross sections in the energy range from the threshold up to 350 eV. The polarization of the ${\mathrm{H}}_{\ensuremath{\alpha}}$ line shows an abrupt decrease, which is contrary to the "normal" behavior of increasing polarization up to the threshold observed for the alkali atom resonance line.

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What this paper is about

The modulated cross-beam technique has been used to measure the excitation function and the polarization of the Balmer-$\ensuremath{\alpha}$ line of atomic hydrogen excited by electron impact. Normalization of the ${\mathrm{H}}_{\ensuremath{\alpha}}$ excitation function to the Born approximation above 300 eV provides cross sections in the energy range from the threshold up to 350 eV. The polarization of the ${\mathrm{H}}_{\ensuremath{\alpha}}$ line shows an abrupt decrease, which is contrary to the "normal" behavior of increasing polarization up to the threshold observed for the alkali atom resonance line.

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Available abstract

The modulated cross-beam technique has been used to measure the excitation function and the polarization of the Balmer-$\ensuremath{\alpha}$ line of atomic hydrogen excited by electron impact. Normalization of the ${\mathrm{H}}_{\ensuremath{\alpha}}$ excitation function to the Born approximation above 300 eV provides cross sections in the energy range from the threshold up to 350 eV. The polarization of the ${\mathrm{H}}_{\ensuremath{\alpha}}$ line shows an abrupt decrease, which is contrary to the "normal" behavior of increasing polarization up to the threshold observed for the alkali atom resonance line.

Key concepts: Atomic physics, Physics, Excited state, Balmer series, Excitation, Polarization (electrochemistry), Spectral line, Emission spectrum

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