The influence of the iron shield of the solenoid on spin tracking

The influence of the iron shield of the solenoid on spin tracking is studied in this paper. In the case of the 200 MeV proton, the study has been numerically done in the ZGOUBI code. The distribution of the magnetic field was done by POISSON. We have come to the conclusion that the influence of the...

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Main Author: Toprek Dragan
Format: Article
Language:English
Published: VINCA Institute of Nuclear Sciences 2005-01-01
Series:Nuclear Technology and Radiation Protection
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/1451-3994/2005/1451-39940501081T.pdf
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author Toprek Dragan
author_facet Toprek Dragan
author_sort Toprek Dragan
collection DOAJ
description The influence of the iron shield of the solenoid on spin tracking is studied in this paper. In the case of the 200 MeV proton, the study has been numerically done in the ZGOUBI code. The distribution of the magnetic field was done by POISSON. We have come to the conclusion that the influence of the solenoid’s shielding on spin tracking is the same at its entrance and exit and that is directly proportional to the intensity of the magnetic induction B on the axis of the solenoid. We have also determined that the influence of the solenoid’s shielding is much stronger on transversal components of the spin than on its longitudinal component. The differences between components of the spin for the shielded and not-shielded solenoid diminish with the in crease in the distance from the solenoid.
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spelling doaj.art-7441e2a14aac4b469f0233956153676d2022-12-22T03:25:40ZengVINCA Institute of Nuclear SciencesNuclear Technology and Radiation Protection1451-39942005-01-01201818510.2298/NTRP0501081TThe influence of the iron shield of the solenoid on spin trackingToprek DraganThe influence of the iron shield of the solenoid on spin tracking is studied in this paper. In the case of the 200 MeV proton, the study has been numerically done in the ZGOUBI code. The distribution of the magnetic field was done by POISSON. We have come to the conclusion that the influence of the solenoid’s shielding on spin tracking is the same at its entrance and exit and that is directly proportional to the intensity of the magnetic induction B on the axis of the solenoid. We have also determined that the influence of the solenoid’s shielding is much stronger on transversal components of the spin than on its longitudinal component. The differences between components of the spin for the shielded and not-shielded solenoid diminish with the in crease in the distance from the solenoid.http://www.doiserbia.nb.rs/img/doi/1451-3994/2005/1451-39940501081T.pdfspinsolenoidfringe field
spellingShingle Toprek Dragan
The influence of the iron shield of the solenoid on spin tracking
Nuclear Technology and Radiation Protection
spin
solenoid
fringe field
title The influence of the iron shield of the solenoid on spin tracking
title_full The influence of the iron shield of the solenoid on spin tracking
title_fullStr The influence of the iron shield of the solenoid on spin tracking
title_full_unstemmed The influence of the iron shield of the solenoid on spin tracking
title_short The influence of the iron shield of the solenoid on spin tracking
title_sort influence of the iron shield of the solenoid on spin tracking
topic spin
solenoid
fringe field
url http://www.doiserbia.nb.rs/img/doi/1451-3994/2005/1451-39940501081T.pdf
work_keys_str_mv AT toprekdragan theinfluenceoftheironshieldofthesolenoidonspintracking
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