Published September 14, 1982 | Version v1
Journal article

Second Born approximation for electron capture at ultrahigh relativistic impact energies

  • 1. Queen's Univ., Belfast, Northern Ireland (UK). Dept. of Applied Mathematics

Description

The relativistic second Born approximation is used to derive an approximate analytical expression for the scattering amplitude for electron capture by a nucleus of charge Zsub(B)e, moving with ultrahigh relativistic energy, from a target hydrogenic ion having nuclear charge Zsub(A)e. By expanding in powers of αZsub(A) and αZsub(B), where α is the fine-structure constant, and retaining the leading terms it is shown that the second-order contribution to the capture cross section falls off as E-1 at ultrahigh relativistic impact energies E-1 at ultrahigh relativistic impact energies E and is not negligible in comparison with the relativistic first-order OBK approximation which also has an E-1 decay. (author)

Additional details

Publishing Information

Journal Title
J. Phys., B (London). At. Mol. Phys.
Journal Volume
15
Journal Issue
17
Series
J. Phys., B (London). At. Mol. Phys.
Journal Page Range
3103-3110
ISSN
0022-3700