Numerical model of proton beam transport through electric scanner

In this work, using the numerical simulation method, the vertical and horizontal displacement of the proton beam is analyzed, by changing the voltage of the plan parallel electrodes of the electric scanner. The initial proton beam was modeled by centered Gaussian distribution. The electrostatic fiel...

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Main Authors: Telečki Igor N., Trajić Ivan M., Jovanović Biljana D., Beličev Petar D.
Format: Article
Language:English
Published: Savez inženjera i tehničara Srbije 2018-01-01
Series:Tehnika
Subjects:
Online Access:https://scindeks-clanci.ceon.rs/data/pdf/0040-2176/2018/0040-21761805667T.pdf
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spelling doaj-5901bd4f0df7437d96999cdd0045d7aa2020-11-24T22:05:26ZengSavez inženjera i tehničara SrbijeTehnika0040-21762560-30862018-01-017356676740040-21761805667TNumerical model of proton beam transport through electric scannerTelečki Igor N.0Trajić Ivan M.1Jovanović Biljana D.2Beličev Petar D.3Univerzitet u Beogradu, Institut za nuklearne nauke 'Vinča', Laboratorija za fiziku, BeogradUniverzitet u Beogradu, Institut za nuklearne nauke 'Vinča', Laboratorija za fiziku, BeogradUniverzitet u Beogradu, Institut za nuklearne nauke 'Vinča', Laboratorija za fiziku, BeogradUniverzitet u Beogradu, Institut za nuklearne nauke 'Vinča', Laboratorija za fiziku, BeogradIn this work, using the numerical simulation method, the vertical and horizontal displacement of the proton beam is analyzed, by changing the voltage of the plan parallel electrodes of the electric scanner. The initial proton beam was modeled by centered Gaussian distribution. The electrostatic field of the scanner was obtained using the finite element method. The dependence of the beam center trensverse shift, as well as the beam losses at the output of the scanner, on the applied electrode voltage, has been determined. Comparison between proton trajectories calculated using analytical/numerical electric field has been performed. Based on this, the effective length of the scanner electrodes was determined. The results of this paper are applied in a technical solution that provides homogeneous fluence distribution in sample irradiation by 3 - 30 keV proton beams, obtained from a light ion source.https://scindeks-clanci.ceon.rs/data/pdf/0040-2176/2018/0040-21761805667T.pdfion beam deflectionscanning system for charged particle beam
collection DOAJ
language English
format Article
sources DOAJ
author Telečki Igor N.
Trajić Ivan M.
Jovanović Biljana D.
Beličev Petar D.
spellingShingle Telečki Igor N.
Trajić Ivan M.
Jovanović Biljana D.
Beličev Petar D.
Numerical model of proton beam transport through electric scanner
Tehnika
ion beam deflection
scanning system for charged particle beam
author_facet Telečki Igor N.
Trajić Ivan M.
Jovanović Biljana D.
Beličev Petar D.
author_sort Telečki Igor N.
title Numerical model of proton beam transport through electric scanner
title_short Numerical model of proton beam transport through electric scanner
title_full Numerical model of proton beam transport through electric scanner
title_fullStr Numerical model of proton beam transport through electric scanner
title_full_unstemmed Numerical model of proton beam transport through electric scanner
title_sort numerical model of proton beam transport through electric scanner
publisher Savez inženjera i tehničara Srbije
series Tehnika
issn 0040-2176
2560-3086
publishDate 2018-01-01
description In this work, using the numerical simulation method, the vertical and horizontal displacement of the proton beam is analyzed, by changing the voltage of the plan parallel electrodes of the electric scanner. The initial proton beam was modeled by centered Gaussian distribution. The electrostatic field of the scanner was obtained using the finite element method. The dependence of the beam center trensverse shift, as well as the beam losses at the output of the scanner, on the applied electrode voltage, has been determined. Comparison between proton trajectories calculated using analytical/numerical electric field has been performed. Based on this, the effective length of the scanner electrodes was determined. The results of this paper are applied in a technical solution that provides homogeneous fluence distribution in sample irradiation by 3 - 30 keV proton beams, obtained from a light ion source.
topic ion beam deflection
scanning system for charged particle beam
url https://scindeks-clanci.ceon.rs/data/pdf/0040-2176/2018/0040-21761805667T.pdf
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AT jovanovicbiljanad numericalmodelofprotonbeamtransportthroughelectricscanner
AT belicevpetard numericalmodelofprotonbeamtransportthroughelectricscanner
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