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The VITROVAC Cavity for the TERA/PIMMS Medical Synchrotron

A proton and light-ion medical synchrotron is characterised by a large frequency swing for the RF between the injection and the top energy. For this purpose, a VITROVAC®-loaded RF cavity has been developed for the Proton-Ion Medical Machine Study (PIMMS) at CERN, and for TERA, the Italian project of...

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Detalles Bibliográficos
Autores principales: Crescenti, M, Susini, A, Primadei, G, Etzkorn, F J, Schnase, A, Fougeron, C
Lenguaje:eng
Publicado: 2000
Materias:
Acceso en línea:http://cds.cern.ch/record/447362
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author Crescenti, M
Susini, A
Primadei, G
Etzkorn, F J
Schnase, A
Fougeron, C
author_facet Crescenti, M
Susini, A
Primadei, G
Etzkorn, F J
Schnase, A
Fougeron, C
author_sort Crescenti, M
collection CERN
description A proton and light-ion medical synchrotron is characterised by a large frequency swing for the RF between the injection and the top energy. For this purpose, a VITROVAC®-loaded RF cavity has been developed for the Proton-Ion Medical Machine Study (PIMMS) at CERN, and for TERA, the Italian project of a proton and light-ion synchrotron for cancer therapy, based on the PIMMS study. The main features are a large frequency swing, particularly extended to the low frequency range, a very large relative permeability and a low Q factor. The total power needed is less than 100 kW, while a very small bias power is required for the frequency tuning. The main mechanical characteristics are compactness (less than 1.5 m), and simplicity of construction. As a result, the requirements of the medical synchrotron are comfortably satisfied, namely: 0.4 to 3 MHz swing, 3 kV peak voltage at a repetition rate of less than 1 s.
id cern-447362
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2000
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spelling cern-4473622021-11-11T09:55:43Zhttp://cds.cern.ch/record/447362engCrescenti, MSusini, APrimadei, GEtzkorn, F JSchnase, AFougeron, CThe VITROVAC Cavity for the TERA/PIMMS Medical SynchrotronAccelerators and Storage RingsA proton and light-ion medical synchrotron is characterised by a large frequency swing for the RF between the injection and the top energy. For this purpose, a VITROVAC®-loaded RF cavity has been developed for the Proton-Ion Medical Machine Study (PIMMS) at CERN, and for TERA, the Italian project of a proton and light-ion synchrotron for cancer therapy, based on the PIMMS study. The main features are a large frequency swing, particularly extended to the low frequency range, a very large relative permeability and a low Q factor. The total power needed is less than 100 kW, while a very small bias power is required for the frequency tuning. The main mechanical characteristics are compactness (less than 1.5 m), and simplicity of construction. As a result, the requirements of the medical synchrotron are comfortably satisfied, namely: 0.4 to 3 MHz swing, 3 kV peak voltage at a repetition rate of less than 1 s.CERN-PS-2000-031-DRoai:cds.cern.ch:4473622000-07-17
spellingShingle Accelerators and Storage Rings
Crescenti, M
Susini, A
Primadei, G
Etzkorn, F J
Schnase, A
Fougeron, C
The VITROVAC Cavity for the TERA/PIMMS Medical Synchrotron
title The VITROVAC Cavity for the TERA/PIMMS Medical Synchrotron
title_full The VITROVAC Cavity for the TERA/PIMMS Medical Synchrotron
title_fullStr The VITROVAC Cavity for the TERA/PIMMS Medical Synchrotron
title_full_unstemmed The VITROVAC Cavity for the TERA/PIMMS Medical Synchrotron
title_short The VITROVAC Cavity for the TERA/PIMMS Medical Synchrotron
title_sort vitrovac cavity for the tera/pimms medical synchrotron
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/447362
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