Total cross-section for low-energy and very low-energy electron collisions with O 2
T. Okumura, N Kobayashi, Atsushi Sayama, Y Mori, Hiroki Akasaka, Kouichi Hosaka, Takeshi Odagiri, M. Hoshino, M. Kitajima
Abstract
T. Okumura, N Kobayashi, Atsushi Sayama, Y Mori, Hiroki Akasaka, Kouichi Hosaka, Takeshi Odagiri, M. Hoshino, M. Kitajima
Abstract
Abstract An absolute total cross-section for electron scattering from O 2 is obtained in the energy range from 20 eV down to 16 meV with a very narrow electron energy width of 7 meV, using the threshold-photoelectron source employing synchrotron radiation. The total cross-section obtained in the present study generally agrees well with those obtained in previous experimental works in the energy region where the previous experimental total cross-sections agree with each other. At lower energies, several features are found, including the very large contribution of the 2 Π g resonance to the total cross-section. The resonance energies and the resonance widths of the individual vibrational states of the 2 Π g resonance are determined from the analysis of the measured absolute total cross-section. The resonance width of the 2 Π g resonance of O 2 is found to be much narrower than the value estimated from previous high-resolution experiments and theoretical calculations.
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Abstract An absolute total cross-section for electron scattering from O 2 is obtained in the energy range from 20 eV down to 16 meV with a very narrow electron energy width of 7 meV, using the threshold-photoelectron source employing synchrotron radiation. The total cross-section obtained in the present study generally agrees well with those obtained in previous experimental works in the energy region where the previous experimental total cross-sections agree with each other. At lower energies, several features are found, including the very large contribution of the 2 Π g resonance to the total cross-section. The resonance energies and the resonance widths of the individual vibrational states of the 2 Π g resonance are determined from the analysis of the measured absolute total cross-section. The resonance width of the 2 Π g resonance of O 2 is found to be much narrower than the value estimated from previous high-resolution experiments and theoretical calculations.
Key concepts: Resonance (particle physics), Cross section (physics), Atomic physics, Range (aeronautics), Shape resonance, Electron, Nuclear cross section, Synchrotron radiation