Approximate relativistic correction factors in L-shell ionisation

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3 Citations (Scopus)

Abstract

Simple approximate correction factors for electronic relativistic effects in L-shell ionisation cross sections by low-energy charged-particle impact have been derived. The factors obtained are compared with the relativistic plane-wave Born approximation calculations using the Dirac wavefunctions and with other approximate correction methods. In the energy region of interest, the present method is found to represent well the relativistic effects.

Original languageEnglish
Article number009
JournalJournal of Physics B: Atomic and Molecular Physics
Volume15
Issue number17
DOIs
Publication statusPublished - 1982

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relativistic effects
ionization
ionization cross sections
Born approximation
charged particles
plane waves
energy
electronics

ASJC Scopus subject areas

  • Atomic and Molecular Physics, and Optics

Cite this

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title = "Approximate relativistic correction factors in L-shell ionisation",
abstract = "Simple approximate correction factors for electronic relativistic effects in L-shell ionisation cross sections by low-energy charged-particle impact have been derived. The factors obtained are compared with the relativistic plane-wave Born approximation calculations using the Dirac wavefunctions and with other approximate correction methods. In the energy region of interest, the present method is found to represent well the relativistic effects.",
author = "T. Mukoyama and L. Sarkadi",
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AU - Mukoyama, T.

AU - Sarkadi, L.

PY - 1982

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N2 - Simple approximate correction factors for electronic relativistic effects in L-shell ionisation cross sections by low-energy charged-particle impact have been derived. The factors obtained are compared with the relativistic plane-wave Born approximation calculations using the Dirac wavefunctions and with other approximate correction methods. In the energy region of interest, the present method is found to represent well the relativistic effects.

AB - Simple approximate correction factors for electronic relativistic effects in L-shell ionisation cross sections by low-energy charged-particle impact have been derived. The factors obtained are compared with the relativistic plane-wave Born approximation calculations using the Dirac wavefunctions and with other approximate correction methods. In the energy region of interest, the present method is found to represent well the relativistic effects.

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