Resonant vibrational excitation RVE cross sections have been calculated for the electron-H2 molecule collisions in the energy range 11-14 eV involving the 2Sigma_g+ excited electronic state of the molecular hydrogen ion H2-. This state, whose threshold is located around 14 eV, gives rise to the so-called series a of the observed peaks in electron-impact differential cross-section measurements. The calculations have been performed within the local complex potential approximation by using the available theoretical potential energy and width for the 2Sigma_g+ resonant state. The cross sections for all vi=0->vf=1-14 RVE transitions have been calculated. A satisfactory agreement of calculated cross sections with the available experimental data is obtained.

Cross sections for 11-14 eV e-H2 resonant collisions: vibrational excitation

R Celiberto;A Laricchiuta
2008

Abstract

Resonant vibrational excitation RVE cross sections have been calculated for the electron-H2 molecule collisions in the energy range 11-14 eV involving the 2Sigma_g+ excited electronic state of the molecular hydrogen ion H2-. This state, whose threshold is located around 14 eV, gives rise to the so-called series a of the observed peaks in electron-impact differential cross-section measurements. The calculations have been performed within the local complex potential approximation by using the available theoretical potential energy and width for the 2Sigma_g+ resonant state. The cross sections for all vi=0->vf=1-14 RVE transitions have been calculated. A satisfactory agreement of calculated cross sections with the available experimental data is obtained.
2008
Istituto di Nanotecnologia - NANOTEC
resonant collisions
Rydberg state
vibrational excitations
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/34440
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