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SLIM (SEM for Low Interception Monitoring): An Innovative Non-Destructive Beam Monitor for the Extraction Lines of a Hadrontherapy Centre

Real time monitoring of hadrontherapy beam intensity and profile is a critical issue for the optimisation of the dose delivery to the patient carcinogenic tissue, the patient safety and the operation of the accelerator complex. For this purpose an innovative beam monitor, based on the secondary emis...

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Detalles Bibliográficos
Autores principales: Badano, L, Ferrando, O, Pezzetta, M, Molinari, G
Lenguaje:eng
Publicado: 2003
Materias:
Acceso en línea:http://cds.cern.ch/record/923936
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author Badano, L
Ferrando, O
Pezzetta, M
Molinari, G
author_facet Badano, L
Ferrando, O
Pezzetta, M
Molinari, G
author_sort Badano, L
collection CERN
description Real time monitoring of hadrontherapy beam intensity and profile is a critical issue for the optimisation of the dose delivery to the patient carcinogenic tissue, the patient safety and the operation of the accelerator complex. For this purpose an innovative beam monitor, based on the secondary emission of electrons by a nonperturbative, sub-micron thick Al target placed directly in the extracted beam path, is being proposed. The secondary electrons, accelerated by an electrostatics focusing system, are detected by a monolithic silicon position sensitive sensor, which provides the beam intensity and its position with a precision of 1 mm at 10 kHz frame rate. The conceptual design and the engineering study optimised for hadrontherapy, together with the results of the preliminary tests of the first system prototype, will be presented.
id cern-923936
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2003
record_format invenio
spelling cern-9239362022-08-17T13:34:15Zhttp://cds.cern.ch/record/923936engBadano, LFerrando, OPezzetta, MMolinari, GSLIM (SEM for Low Interception Monitoring): An Innovative Non-Destructive Beam Monitor for the Extraction Lines of a Hadrontherapy CentreAccelerators and Storage RingsReal time monitoring of hadrontherapy beam intensity and profile is a critical issue for the optimisation of the dose delivery to the patient carcinogenic tissue, the patient safety and the operation of the accelerator complex. For this purpose an innovative beam monitor, based on the secondary emission of electrons by a nonperturbative, sub-micron thick Al target placed directly in the extracted beam path, is being proposed. The secondary electrons, accelerated by an electrostatics focusing system, are detected by a monolithic silicon position sensitive sensor, which provides the beam intensity and its position with a precision of 1 mm at 10 kHz frame rate. The conceptual design and the engineering study optimised for hadrontherapy, together with the results of the preliminary tests of the first system prototype, will be presented.oai:cds.cern.ch:9239362003
spellingShingle Accelerators and Storage Rings
Badano, L
Ferrando, O
Pezzetta, M
Molinari, G
SLIM (SEM for Low Interception Monitoring): An Innovative Non-Destructive Beam Monitor for the Extraction Lines of a Hadrontherapy Centre
title SLIM (SEM for Low Interception Monitoring): An Innovative Non-Destructive Beam Monitor for the Extraction Lines of a Hadrontherapy Centre
title_full SLIM (SEM for Low Interception Monitoring): An Innovative Non-Destructive Beam Monitor for the Extraction Lines of a Hadrontherapy Centre
title_fullStr SLIM (SEM for Low Interception Monitoring): An Innovative Non-Destructive Beam Monitor for the Extraction Lines of a Hadrontherapy Centre
title_full_unstemmed SLIM (SEM for Low Interception Monitoring): An Innovative Non-Destructive Beam Monitor for the Extraction Lines of a Hadrontherapy Centre
title_short SLIM (SEM for Low Interception Monitoring): An Innovative Non-Destructive Beam Monitor for the Extraction Lines of a Hadrontherapy Centre
title_sort slim (sem for low interception monitoring): an innovative non-destructive beam monitor for the extraction lines of a hadrontherapy centre
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/923936
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