Potential energy surfaces describing ion complexes containing molecular hydrogen
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.463246
Reference88 articles.
1. Reply to Johnsen and Biondi’s comment on ‘‘An MCSCF characterization of the HeH+2 2 2A1(2Σ+) polarization state. A radiative mechanism for the production of H+2 from thermal He++H2 collisions’’ [D. G. Hopper, J. Chem. Phys. 73, 3289 (1980)]
2. Reply to Johnsen and Biondi’s comment on ‘‘An MCSCF characterization of the HeH+2 2 2A1(2Σ+) polarization state. A radiative mechanism for the production of H+2 from thermal He++H2 collisions’’ [D. G. Hopper, J. Chem. Phys. 73, 3289 (1980)]
3. Reply to Johnsen and Biondi’s comment on ‘‘An MCSCF characterization of the HeH+2 2 2A1(2Σ+) polarization state. A radiative mechanism for the production of H+2 from thermal He++H2 collisions’’ [D. G. Hopper, J. Chem. Phys. 73, 3289 (1980)]
4. Reply to Johnsen and Biondi’s comment on ‘‘An MCSCF characterization of the HeH+2 2 2A1(2Σ+) polarization state. A radiative mechanism for the production of H+2 from thermal He++H2 collisions’’ [D. G. Hopper, J. Chem. Phys. 73, 3289 (1980)]
5. Reply to Johnsen and Biondi’s comment on ‘‘An MCSCF characterization of the HeH+2 2 2A1(2Σ+) polarization state. A radiative mechanism for the production of H+2 from thermal He++H2 collisions’’ [D. G. Hopper, J. Chem. Phys. 73, 3289 (1980)]
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