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Title: Positronium formation in the ground and excited states (n=2 levels) in a positron-negative hydrogen-ion collision

Journal Article · · Physical Review. A
;  [1]
  1. Theoretical Physics Department, Indian Association for the Cultivation of Science, Kolkata 700032 (India)

An approach has been proposed and developed to study the positronium (Ps) formation cross sections in the ground and excited n=2 levels for the exothermic reaction in a positron-negative hydrogen-ion (H{sup -}) collision in the framework of Coulomb distorted eikonal approximation. Both the differential cross sections (DCS) as well as integrated cross sections [partial total cross sections (TCS)] have been investigated for the 1s, 2s, and 2p states in a broad energy range, e.g., 1-200 eV. For lower incident energy, the Ps formation in the 2p state is found to dominate over the 1s and 2s states while for the higher incident energy, the formation to ground state (1s) dominates the other two states. Present results have been compared with other existing theoretical results where available in the absence of any experimental data. Both the DCS and the partial TCS results are found to agree quite satisfactorily with the coupled pseudostate results of McAlinden et al. [Phys. Rev. A 65, 032715 (2002)] in the low-energy range 1-10 eV. At higher incident energies, the present results are always lower than the Coulomb Born and orthogonalized Coulomb Born results of Basu Choudhury et al. [Phys. Rev. A 33, 2358 (1986)] and Straton et al. [Phys. Rev. A 44, 7335 (1991)], respectively. The present DCS (1s,2s) exhibits double peak structure at high incident energy that could be attributed to higher-order effects. The signature of the present double peak structure which is totally absent in the Coulomb Born approximation or in the orthogonalized Coulomb Born approximation becomes more prominent with increasing incident energy.

OSTI ID:
20643627
Journal Information:
Physical Review. A, Vol. 69, Issue 5; Other Information: DOI: 10.1103/PhysRevA.69.052717; (c) 2004 The American Physical Society; Country of input: International Atomic Energy Agency (IAEA); ISSN 1050-2947
Country of Publication:
United States
Language:
English

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