In this work we critically revise several aspects of previous ab-initio quantum chemistry studies (Mol. Phys. 98, 1835 (2000) and Chem. Phys. Lett. 469, 26 (2009)) of the HeH+2system. New diatomic curves for the H+2and HeH+ molecular ions, which provide vibrational frequencies at a near spectroscopic level of accuracy, have been generated to test the quality of the diatomic terms employed in the previous an- alytical fittings. The reliability of the global potential energy surfaces has also been tested performing benchmark quantum scattering calculations within the time-independent approach in an extended inter- val of energies. In particular, the total integral cross sections have been calculated in the total collision energy range 0.955-2.400 eV for the scattering of the He atom by the ortho- and para-hydrogen molec- ular ion. The energy profiles of the total integral cross sections for selected vibro-rotational states of H+2( v=0,···,5 and j=1,···,7) show a strong rotational enhancement for the lower vibrational states which becomes weaker as the vibrational quantum number increases. Comparison with several available experimental data is presented and discussed.

'The He + H2+---> HeH+ + H reaction: ab-initio Study of the potential energy surface, benchmark time-independent quantum dynamics in an extended energy range anc comparison with the experiments '.

De Fazio D;
2012

Abstract

In this work we critically revise several aspects of previous ab-initio quantum chemistry studies (Mol. Phys. 98, 1835 (2000) and Chem. Phys. Lett. 469, 26 (2009)) of the HeH+2system. New diatomic curves for the H+2and HeH+ molecular ions, which provide vibrational frequencies at a near spectroscopic level of accuracy, have been generated to test the quality of the diatomic terms employed in the previous an- alytical fittings. The reliability of the global potential energy surfaces has also been tested performing benchmark quantum scattering calculations within the time-independent approach in an extended inter- val of energies. In particular, the total integral cross sections have been calculated in the total collision energy range 0.955-2.400 eV for the scattering of the He atom by the ortho- and para-hydrogen molec- ular ion. The energy profiles of the total integral cross sections for selected vibro-rotational states of H+2( v=0,···,5 and j=1,···,7) show a strong rotational enhancement for the lower vibrational states which becomes weaker as the vibrational quantum number increases. Comparison with several available experimental data is presented and discussed.
2012
Istituto di Nanotecnologia - NANOTEC
Inglese
137
24
244306
244319
14
Sì, ma tipo non specificato
GROUND ELECTRONIC-STATE
WAVE-PACKET
HYPERQUANTIZATION ALGORITHM. MICROHARTREE ACCURACY
CHEMICAL-REACTIONS
ANGULAR-MOMENTUM
BEAM SCATTERING
EARLY UNIVERSE
KINETIC PATHS
HE
1
info:eu-repo/semantics/article
262
De Fazio, D ; de Castro M ; Aguado A ; Aquilanti, V ; Cavalli, S
01 Contributo su Rivista::01.01 Articolo in rivista
none
   Pan-European Research infrastructure on High Performance Computing for 21st century Science
   HPC-EUROPA2
   FP7
   228398
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/221957
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