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Potential Splitting Approach to Positron Scattering Off the Hydrogen Atom and the Positive Helium Ion. / Belov, P. A.; Gradusov, V. A.; Volkov, M. V.; Yakovlev, S. L.; Yarevsky, E. A.

в: Few-Body Systems, Том 58, 2017, стр. 114.

Результаты исследований: Научные публикации в периодических изданияхстатьяРецензирование

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@article{c23235d9e80442018a8141b4936c0c5b,
title = "Potential Splitting Approach to Positron Scattering Off the Hydrogen Atom and the Positive Helium Ion",
abstract = "The positron-hydrogen atom and the positron-positive helium ion scattering problems at the energies below the second excitation threshold of the positronium are solved by the potential splitting approach combined with the complex scaling technique. We solve the Schr{\"o}dinger equation in the total angular momentum representation. The elastic scattering and excitation cross-sections are obtained.",
author = "Belov, {P. A.} and Gradusov, {V. A.} and Volkov, {M. V.} and Yakovlev, {S. L.} and Yarevsky, {E. A.}",
year = "2017",
language = "English",
volume = "58",
pages = "114",
journal = "Few-Body Systems",
issn = "0177-7963",
publisher = "Springer Nature",

}

RIS

TY - JOUR

T1 - Potential Splitting Approach to Positron Scattering Off the Hydrogen Atom and the Positive Helium Ion

AU - Belov, P. A.

AU - Gradusov, V. A.

AU - Volkov, M. V.

AU - Yakovlev, S. L.

AU - Yarevsky, E. A.

PY - 2017

Y1 - 2017

N2 - The positron-hydrogen atom and the positron-positive helium ion scattering problems at the energies below the second excitation threshold of the positronium are solved by the potential splitting approach combined with the complex scaling technique. We solve the Schrödinger equation in the total angular momentum representation. The elastic scattering and excitation cross-sections are obtained.

AB - The positron-hydrogen atom and the positron-positive helium ion scattering problems at the energies below the second excitation threshold of the positronium are solved by the potential splitting approach combined with the complex scaling technique. We solve the Schrödinger equation in the total angular momentum representation. The elastic scattering and excitation cross-sections are obtained.

M3 - Article

VL - 58

SP - 114

JO - Few-Body Systems

JF - Few-Body Systems

SN - 0177-7963

ER -

ID: 7741076