<div class="csl-bib-body">
<div class="csl-entry">Kühteubl, F. (2020). <i>Design study of radio frequency knockout slow extraction for the MedAustron synchrotron</i> [Diploma Thesis, Technische Universität Wien]. reposiTUm. https://doi.org/10.34726/hss.2020.77640</div>
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dc.identifier.uri
https://doi.org/10.34726/hss.2020.77640
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dc.identifier.uri
http://hdl.handle.net/20.500.12708/1297
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dc.description
Abweichender Titel nach Übersetzung der Verfasserin/des Verfassers
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dc.description.abstract
MedAustron is a state-of-the-art ion therapy facility in Wiener Neustadt with the aim to treat cancer patients with ion beams. The extraction of the accelerated particles with the desired energy from the synchrotron to the treatment rooms is one of the critical steps of the process. A stable beam of five seconds with a constant intensity is mandatory to achieve high quality patient treatment. To reach such long extraction times, third order resonant slow extraction is used. At MedAustron, slow extraction is currently driven by a betatron core, which increases the particle momentum to move the beam slowly into the resonance condition. However, current ripples on synchrotron components (especially quadrupoles) have got a negative impact on the quality of the extracted spill. Additionally, a fast change of the beam energy via multi energy extraction is not possible with betatron core driven extraction. To address these problems, the slow extraction mechanism could be changed to a slow extraction driven by Radio Frequency Knockout (RF KO). This method increases the transverse amplitude of the particles by applying an RF voltage to a transverse kicker. The current is modulated with a frequency corresponding to the revolution frequency times the horizontal tune of the particles. The design of such a mechanism is the goal of this Master thesis, which is undertaken by simulations of the extraction process with MAD-X and Python. Firstly, the Steinbach diagram of the extraction is re-constructed via simulations and the behaviour under parameter variation is studied. Secondly, the basic principle of RF KO is tested and the optimal choice of the lattice parameters such as horizontal tune QH and horizontal chromaticity QH′ is determined in order to maximize beam intensity and quality after extraction. Thirdly, promising candidates for RF KO are investigated more closely and a comparison to the betatron core-driven extraction is drawn.
en
dc.language
English
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dc.language.iso
en
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dc.rights.uri
http://rightsstatements.org/vocab/InC/1.0/
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dc.subject
Synchrotron
de
dc.subject
Extraktion
de
dc.subject
Hadronentherapie
de
dc.subject
Synchrotron
en
dc.subject
Extraction
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dc.subject
Hadron Therapy
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dc.title
Design study of radio frequency knockout slow extraction for the MedAustron synchrotron
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dc.title.alternative
Designstudie für die langsame Extraktion am MedAustron Synchrotron mittels Radiofrequenzanregung
de
dc.type
Thesis
en
dc.type
Hochschulschrift
de
dc.rights.license
In Copyright
en
dc.rights.license
Urheberrechtsschutz
de
dc.identifier.doi
10.34726/hss.2020.77640
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dc.contributor.affiliation
TU Wien, Österreich
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dc.rights.holder
Florian Kühteubl
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dc.publisher.place
Wien
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tuw.version
vor
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tuw.thesisinformation
Technische Universität Wien
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tuw.publication.orgunit
E141 - Atominstitut
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dc.type.qualificationlevel
Diploma
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dc.identifier.libraryid
AC15635854
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dc.description.numberOfPages
77
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dc.identifier.urn
urn:nbn:at:at-ubtuw:1-136848
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dc.thesistype
Diplomarbeit
de
dc.thesistype
Diploma Thesis
en
tuw.author.orcid
0009-0001-5431-2662
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dc.rights.identifier
In Copyright
en
dc.rights.identifier
Urheberrechtsschutz
de
tuw.advisor.staffStatus
staff
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item.languageiso639-1
en
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item.openairetype
master thesis
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item.grantfulltext
open
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item.fulltext
with Fulltext
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item.cerifentitytype
Publications
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item.mimetype
application/pdf
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item.openairecristype
http://purl.org/coar/resource_type/c_bdcc
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item.openaccessfulltext
Open Access
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crisitem.author.dept
E141-03 - Forschungsbereich Nuclear and Particle Physics