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AbstractAbstract
[en] Normalized, absolute differential cross sections have been measured for electron-impact excitation of 23 individual or composite electronic states of argon lying within 14.30 eV of the ground state. Incident electron energies are 16, 20, 30, 50, and 100 eV, and the range of scattering angles 50--1380. The absolute differential cross sections are extrapolated to 00 and 1800 and integrated to yield integral and inelastic-scattering momentum-transfer cross sections for the excitation processes. Errors in the differential cross section are grouped into the classes A (26%), B (31%), and C (45%), with slightly larger errors given to the integrated quantities owing to extrapolation uncertainties. Comparisons of the present data are made with previous measurements where available, and with results of several distorted-wave and Born calculations. Differential magnetic sublevel cross sections for the 3P1 and 1P1 levels are also obtained at 50-eV incident energy and 50 scattering angle using previously measured l parameters
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Journal Article
Literature Type
Numerical Data
Journal
Phys. Rev., A; ISSN 0556-2791;
; v. 23(5); p. 2178-2193

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