Electron correlations in the antiproton energy loss distribution in He

Fuente: arXiv
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Main Authors: Borbély, S., Tong, X. -M., Nagele, S., Feist, J., Březinová, I., Lackner, F., Nagy, L., Tőkési, K., Burgdörfer, J.
Format: Preprint
Published: 2019
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author Borbély, S.
Tong, X. -M.
Nagele, S.
Feist, J.
Březinová, I.
Lackner, F.
Nagy, L.
Tőkési, K.
Burgdörfer, J.
author_facet Borbély, S.
Tong, X. -M.
Nagele, S.
Feist, J.
Březinová, I.
Lackner, F.
Nagy, L.
Tőkési, K.
Burgdörfer, J.
contents We present ab-initio calculations of the electronic differential energy transfer (DET) cross-sections for antiprotons with energies between $3$keV and $1$MeV interacting with helium. By comparison with simulations employing the mean-field description based on the single-active electron approximation we are able to identify electron correlation effects in the stopping and straggling cross sections. Most remarkably, we find that straggling exceeds the celebrated Bohr straggling limit when correlated shake-up processes are included.
format Preprint
id arxiv_https___arxiv_org_abs_1901_10212
institution arXiv
publishDate 2019
record_format arxiv
spellingShingle Electron correlations in the antiproton energy loss distribution in He
Borbély, S.
Tong, X. -M.
Nagele, S.
Feist, J.
Březinová, I.
Lackner, F.
Nagy, L.
Tőkési, K.
Burgdörfer, J.
Atomic Physics
We present ab-initio calculations of the electronic differential energy transfer (DET) cross-sections for antiprotons with energies between $3$keV and $1$MeV interacting with helium. By comparison with simulations employing the mean-field description based on the single-active electron approximation we are able to identify electron correlation effects in the stopping and straggling cross sections. Most remarkably, we find that straggling exceeds the celebrated Bohr straggling limit when correlated shake-up processes are included.
title Electron correlations in the antiproton energy loss distribution in He
topic Atomic Physics
url https://arxiv.org/abs/1901.10212