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- W2075672961 abstract "The method of Auger electron spectroscopy was used to measure the cross sections for Auger decay of the configurations 3lnl′ and 4lnl′ (n⩾4) created in the collision system Ne10++He at impact energies ranging from 10 keV to 250 keV. Auger yields were calculated to convert the experimental cross sections for Auger-electron emission into the corresponding cross sections for double electron capture. The different contributions to stabilization were extracted from the experimental double-capture cross sections and calculated fluorescence yields. For all energies, radiative stabilization is found to be about 0.3 when referred to the total double capture. At energies lower than 100 keV, the major contribution to the stabilization originates from the states 3lnl′ (n⩾6) which are populated by the collisional dielectronic process of autoexcitation. A small contribution is found to be due to the configurations 3lnl′ (n>9) created by dielectronic process phenomena in the postcollisional and asymptotic regions (≈0.04)." @default.
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- W2075672961 date "1997-01-01" @default.
- W2075672961 modified "2023-10-18" @default.
- W2075672961 title "Uger-electron spectroscopy in slow highly charged ion-atom collisions: Double capture and stabilization" @default.
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- W2075672961 doi "https://doi.org/10.1063/1.52655" @default.
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