Influence of nuclear multiple scattering on axially channeled protons in a bent crystal
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Published:2018
Issue:2
Volume:33
Page:195-200
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ISSN:1451-3994
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Container-title:Nuclear Technology and Radiation Protection
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language:en
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Short-container-title:NUCL TECH RAD PROT
Author:
Stojanov Nace1,
Petrovic Srdjan2ORCID,
Jakimovski Dragan1
Affiliation:
1. Sts. Cyril and Methodius University, Faculty of Natural Sciences and Mathematics, Institute of Physics, Skopje, Macedonia
2. Vinča Institute of Nuclear Sciences, Laboratory of Physics, Belgrade
Abstract
The influence of nuclear multiple scattering on axially channeled protons
with an energy of 7 TeV through a bent <100> Si crystal, is presented in
this paper. The aims of the investigation are the processes correlated to
the axial channeling, such as dechanneling, angular distributions and
energy loss distribution. The data for these processes are generated via the
numerical solution of the proton equations of motion in the transverse
plane and the computer simulation method. In the simulations, the crystal
thickness is varied from 1 to 5 mm while the bending angle is varied from 0
to 20 mrad. The increasing of the transverse energy of axially channeled
protons is due to its multiple scattering by atomic strings and the bending
dechanneling mechanism. The analysis of the generated data shows that in the
cases we are considering, the dechanneling function, the energy loss
spectra, and the angular distributions do not undergo to any significant
changes when the effect of nuclear multiple scattering is included in the
ion-atom interactions.
Publisher
National Library of Serbia
Subject
Safety, Risk, Reliability and Quality,Nuclear Energy and Engineering