Va. Dzuba et al., MANY-BODY CALCULATIONS OF POSITRON SCATTERING AND ANNIHILATION FROM NOBLE-GAS ATOMS, Journal of physics. B, Atomic molecular and optical physics, 29(14), 1996, pp. 3151-3175
We have applied many-body theory methods to study the interaction of l
ow-energy positrons with noble-gas atoms. The positron-atom correlatio
n potential includes explicitly the contribution from the target polar
ization by the positron and that from the virtual positronium (Ps) for
mation. It is demonstrated that the correlations and Ps formation (or
tunnelling of electrons from the atom to the positron) create virtual
levels in the positron-atom system. The existence of the virtual level
s strongly influences the scattering and increases the positron annihi
lation rate by up to 400 times. The calculated elastic cross sections
are in good agreement with experimental data The inclusion of virtual
Ps formation greatly improves the agreement with experimental annihila
tion rates with respect to calculations taking only the polarization i
nto account. Our calculations have highlighted the difference between
the calculation of positron-atom scattering and the calculation of cor
responding annihilation rates. The annihilation rate is very sensitive
to the behaviour of the wavefunction at small positron-electron separ
ations. A simple approximate formula based on the Sommerfeld factor is
suggested to account for the effect of electron-positron Coulomb attr
action on the annihilation rates.