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- W2023752198 abstract "The angular distribution, as well as the energy distribution of ensuremath{delta} electrons produced in collisions of 1.0-MeV/u ${mathrm{F}}^{mathit{q}+}$ (q=4,6,8,9) ions with molecular hydrogen, have been studied for laboratory observation angles (${mathrm{ensuremath{theta}}}_{mathit{L}}$) from 0ifmmode^circelsetextdegreefi{} to 70ifmmode^circelsetextdegreefi{} with respect to the beam direction. The measurements are in fair agreement with the impulse approximation calculations which use the quantal elastic electron-ion differential scattering cross sections folded with the Compton profile of the target electrons. We observe that the energy of the centroid of the binary-encounter-electron (BEE) peak is projectile charge state, q, and laboratory angle, ${mathrm{ensuremath{theta}}}_{mathit{L}}$, dependent. Moreover, at 0ifmmode^circelsetextdegreefi{}, an enhancement of the ratio of the observed double differential cross section for nonbare projectiles to that for the bare ion projectiles, ensuremath{sigma}(q+)/ensuremath{sigma}(9+), is observed, contrary to the ${mathit{q}}^{2}$ scaling predicted by a first Born calculation for ionization. This ratio ensuremath{sigma}(q+)/ensuremath{sigma}(9+) decreases nonotonically with increasing ${mathrm{ensuremath{theta}}}_{mathit{L}}$, and becomes smaller than one for ${mathrm{ensuremath{theta}}}_{mathit{L}}$ensuremath{ge}30ifmmode^circelsetextdegreefi{}." @default.
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- W2023752198 date "1994-08-01" @default.
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- W2023752198 title "Angular distribution of δ electrons emitted in collisions of 1.0-MeV/uFq+(q=4,6,8,9) with molecular hydrogen" @default.
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- W2023752198 doi "https://doi.org/10.1103/physreva.50.1328" @default.
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