Published February 1977 | Version v1
Journal article

Energy and angular distribution of electrons ejected from autoionization states in helium by electron impact

  • 1. Research Laboratory of Nuclear Reactor, Tokyo Institute of Technology, Meguro-ku, Tokyo, Japan

Description

Energy spectra of electrons ejected from autoionization states in helium by electron impact have been extensively measured for primary energies from 65 to 1000 eV and for ejection angles from 13degree to 142degree. The line shape in energy spectra undergoes a noticeable change with ejection angle as well as impact energy, reflecting the characteristics of the corresponding autoionization state. The single differential cross sections (differential in angle) for emissions of autoionized electrons have been obtained by integrating the energy spectra in the vicinity of each isolated resonance with respect to the energy after subtraction of the continuum background, for the (2s2)1S, (2s2p)3P, (2p2)1D, and (2s2p)1P states as a function of primary energy at 33degree, 127degree, and 142degree. Profiles of the spectra due to the (2s2)1S state have been analyzed using Fano's formula, and the shape parameter q is given as a function of ejection angle for 250-eV impact. A number of the autoionization states lying above approx. 62 eV have also been measured and identified as members of the (2sns)1S, (2pnp)1S, (sp2n-)3P, (2pnp)1D, and (sp2n+)1P (n = 2--5) series, and our results are compared with previous results of theory and experiment

Additional details

Additional titles

Augmented title (English)
65 to 1000 eV, differential cross sections

Identifiers

Publishing Information

Journal Title
Physical Review A
Journal Volume
15
Journal Issue
2
Series
Phys. Rev., A.
Journal Page Range
574-587
ISSN
0556-2791

Optional Information

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