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- W2073786802 abstract "Single ionization of the HD molecule by fast ion impact is used to populate the vibrational continuum of the ${mathrm{HD}}^{+}$ electronic ground state $(1sensuremath{sigma}).$ The resulting dissociation leads to two final states, the lower $1sensuremath{sigma}$ state or the first excited $2pensuremath{sigma}$ state, which is 3.7 meV higher at the separated atom limit due to the finite nuclear mass correction to the Born-Oppenheimer approximation. We find dissociation to the lower ${mathrm{H}}^{+}+mathrm{D}(1s)$ state to be about 7% more likely than to the upper $mathrm{H}(1s)+{mathrm{D}}^{+}$ final state. The major experimental difficulty in this measurement is the determination of the ${mathrm{H}}_{2}$ contamination in the HD target. Two different methods of determining this contamination are presented, and the details of the measurement of the relative yields of the final two ground-state dissociation channels are discussed. The experimental results are compared to our coupled channels calculation and to a model based on Meyerhof's approximate formulation." @default.
- W2073786802 created "2016-06-24" @default.
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- W2073786802 date "2000-11-07" @default.
- W2073786802 modified "2023-10-16" @default.
- W2073786802 title "Asymmetric branching ratio for the dissociation ofHD+(1sσ)" @default.
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- W2073786802 doi "https://doi.org/10.1103/physreva.62.062707" @default.
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