Threshold photoelectron spectroscopy in the inner-valence ionization region and photo-double ionization of SF6
Andrew J. Yencha, M. C. A. Lopes, David B. Thompson, G C King
Abstract
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Andrew J. Yencha, M. C. A. Lopes, David B. Thompson, G C King
Abstract
Open-access reader
The threshold photoelectron (TPE) spectrum of SF 6 has been recorded over the photon energy range 25-140 eV using synchrotron radiation and a penetrating-field electron spectrometer. In addition, the photo-double ionization spectrum of SF 6 has been obtained over the energy range 30.7-49.3 eV using the threshold photoelectrons coincidence technique. The TPE spectrum in the inner-valence ionization region is found to be significantly different to the conventional photoelectron spectrum in the same binding energy region. Indirect autoionization of neutral Rydberg and shape-resonance states of SF 6 dominate the formation of the TPE spectrum. Inner-valence SF 6 + ion states appear to play a major role in the formation of the SF 6 2+ ion states. The onset of double ionization in SF 6 was found to occur at 31.98±0.02 eV.
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The threshold photoelectron (TPE) spectrum of SF 6 has been recorded over the photon energy range 25-140 eV using synchrotron radiation and a penetrating-field electron spectrometer. In addition, the photo-double ionization spectrum of SF 6 has been obtained over the energy range 30.7-49.3 eV using the threshold photoelectrons coincidence technique. The TPE spectrum in the inner-valence ionization region is found to be significantly different to the conventional photoelectron spectrum in the same binding energy region. Indirect autoionization of neutral Rydberg and shape-resonance states of SF 6 dominate the formation of the TPE spectrum. Inner-valence SF 6 + ion states appear to play a major role in the formation of the SF 6 2+ ion states. The onset of double ionization in SF 6 was found to occur at 31.98±0.02 eV.
Key concepts: Atomic physics, Ionization, Photoionization, Photoelectric effect, Autoionization, Rydberg formula, Double ionization, Photoemission spectroscopy