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Electron excitation processes in low energy collisions of hydrogen-helium atoms
Abstract:The electron excitation processes of $rm H(1s) + He(1s^{2}) to H(2s/2p) + He(1s^{2})$ are studied in impact energy range of 20—2000 eV/u by using the quantum-mechanical molecular orbital close-coupling (QMOCC) method. Total and state-selective cross sections have been obtained and compared with the available theoretical and experimental results. The results agree well with available measurements in the overlapping energy regions overall. The comparison of our results with other theoretical calculations further demonstrates the importance of considering a sufficient number of channels. The datasets presented in this paper, including the excitation cross sections, are openly available at https://www.doi.org/10.57760/sciencedb.j00113.00083.
Keywords:electron excitation processes  low energy collision  quantum-mechanical molecular orbital close-coupling method  cross section  
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