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@ARTICLE{Matveev:852581,
author = {Matveev, D. and Wensing, M. and Ferry, L. and Virot, F. and
Barrachin, M. and Ferro, Y. and Linsmeier, Ch.},
title = {{R}eaction-diffusion modeling of hydrogen transport and
surface effects in application to single-crystalline {B}e},
journal = {Nuclear instruments $\&$ methods in physics research / B},
volume = {430},
issn = {0168-583X},
address = {Amsterdam [u.a.]},
publisher = {Elsevier},
reportid = {FZJ-2018-05493},
pages = {23 - 30},
year = {2018},
abstract = {A model based on a reaction-diffusion approach is used to
simulate thermal desorption experiments performed with ion
beam exposed single-crystalline beryllium. The model
describes deuterium retention, migration and release,
relating microscopic material properties to desorption
spectra observed in experiments. Multiple trapping at single
vacancies, hydrogen accumulation on the surface and surface
coverage dependent desorption are accounted for in the
model, showing good qualitative agreement with experimental
observations.},
cin = {IEK-4},
ddc = {530},
cid = {I:(DE-Juel1)IEK-4-20101013},
pnm = {174 - Plasma-Wall-Interaction (POF3-174)},
pid = {G:(DE-HGF)POF3-174},
typ = {PUB:(DE-HGF)16},
UT = {WOS:000439682600005},
doi = {10.1016/j.nimb.2018.05.037},
url = {https://juser.fz-juelich.de/record/852581},
}