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Positron total cross sections for collisions with N_2 and CO_2 at 30-3000 eV

Positron total cross sections for collisions with N_2 and CO_2 at 30-3000 eV
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摘要 The total (elastic plus inelastic) cross sections for positron scattering from N2 and CO2 over the incident energy range from 30 to 3000eV are calculated using the additivity rule model at Hartree-Fock level. A complex optical model potential modified by incorporating the concept of bonded atom, which takes into account the overlapping effect of electron clouds between two atoms in a molecule, is employed to calculate the total cross section of positron-molecule scattering. The calculated total cross sections are in good agreement with those reported by experiments and other theories over a wide energy range. The total (elastic plus inelastic) cross sections for positron scattering from N2 and CO2 over the incident energy range from 30 to 3000eV are calculated using the additivity rule model at Hartree-Fock level. A complex optical model potential modified by incorporating the concept of bonded atom, which takes into account the overlapping effect of electron clouds between two atoms in a molecule, is employed to calculate the total cross section of positron-molecule scattering. The calculated total cross sections are in good agreement with those reported by experiments and other theories over a wide energy range.
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2006年第3期125-127,共3页 中国光学快报(英文版)
基金 This work was supported by the National Natural Science Foundation of China under Grant No. 10574039.
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