Published March 1, 1990 | Version v1
Journal article

Low-energy positron-argon collisions by using parameter-free positron correlation polarization potentials

Creators

  • 1. Department of Physics, Box 981, Florida A ampersand M University, Tallahassee, Florida 32307 (USA)

Description

We report differential, integral, and momentum-transfer cross sections and the scattering length (A0) for positron (e+)-argon scattering at low energies below the positronium formation threshold. An optical-potential approach is employed in which the repulsive Coulombic interaction is calculated exactly at the Hartree-Fock level and the attractive polarization and correlation effects are included approximately via a parameter-free positron correlation polarization (PCP) potential recently proposed by us. The PCP model is based on the correlation energy var-epsilon corr of one positron in a homogeneous electron gas; in the outside region, the var-epsilon corr is joined smoothly with the correct asymptotic form of the polarization interaction (-α0/2r4, where α0 is the target polarizability) where they cross each other for the first time. The total optical potential of the e+-argon system is treated exactly in a partial-wave analysis to extract the scattering parameters. It is found that the PCP potential gives much better qualitative results, particularly for the differential cross sections and the scattering length, than the corresponding results obtained from an electron polarization potential used as such for the positron case. We also discuss the ''critical'' points (representing the minima in the differential scattering) in the low-energy e+-Ar scattering. The present results involve no fitting procedure

Additional details

Publishing Information

Journal Title
Physical Review, A
Journal Volume
41
Journal Issue
5
Series
Phys. Rev., A.
Journal Page Range
2437-2444
ISSN
0556-2791
CODEN
PLRAA