Cargando…

Simulations and Measurements of the CCL Modules of the LIGHT Accelerator

A 230 MeV proton LINAC system for medical applications is being developed and commissioned for the LIGHT (Linac Image Guided Hadron Therapy) project by AVO-ADAM. The LINAC system consists of a 750 MHz RFQ (Radio frequency quadrupole) for the low energy proton acceleration, 2998 MHz SCDTL (Side Coupl...

Descripción completa

Detalles Bibliográficos
Autores principales: Khan, Vasim, De Michele, Giovanni, Esposito, Marco, Fanella, Stefano, Gibson, Stephen, Gradassi, Paolo, Ivanisenko, Yevgeniy, Mellace, Claudio, Navarro Quirante, Jose Luis, Zannini, Carlo
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.18429/JACoW-IPAC2018-MOPML015
http://cds.cern.ch/record/2665491
_version_ 1780961946000949248
author Khan, Vasim
De Michele, Giovanni
Esposito, Marco
Fanella, Stefano
Gibson, Stephen
Gradassi, Paolo
Ivanisenko, Yevgeniy
Mellace, Claudio
Navarro Quirante, Jose Luis
Zannini, Carlo
author_facet Khan, Vasim
De Michele, Giovanni
Esposito, Marco
Fanella, Stefano
Gibson, Stephen
Gradassi, Paolo
Ivanisenko, Yevgeniy
Mellace, Claudio
Navarro Quirante, Jose Luis
Zannini, Carlo
author_sort Khan, Vasim
collection CERN
description A 230 MeV proton LINAC system for medical applications is being developed and commissioned for the LIGHT (Linac Image Guided Hadron Therapy) project by AVO-ADAM. The LINAC system consists of a 750 MHz RFQ (Radio frequency quadrupole) for the low energy proton acceleration, 2998 MHz SCDTL (Side Coupled Drift Tube Linacs) for the medium energy and 2998 MHz CCL (Coupled Cavity Linacs) for the high energy. In particular, the CCL accelerating modules are used in the energy range from 37.5 - 230 MeV. In this paper we discuss the 3D EM (electro-magnetic) simulation results and measurements of the CCL modules.
id oai-inspirehep.net-1691388
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
record_format invenio
spelling oai-inspirehep.net-16913882019-09-30T06:29:59Zdoi:10.18429/JACoW-IPAC2018-MOPML015http://cds.cern.ch/record/2665491engKhan, VasimDe Michele, GiovanniEsposito, MarcoFanella, StefanoGibson, StephenGradassi, PaoloIvanisenko, YevgeniyMellace, ClaudioNavarro Quirante, Jose LuisZannini, CarloSimulations and Measurements of the CCL Modules of the LIGHT AcceleratorAccelerators and Storage RingsA 230 MeV proton LINAC system for medical applications is being developed and commissioned for the LIGHT (Linac Image Guided Hadron Therapy) project by AVO-ADAM. The LINAC system consists of a 750 MHz RFQ (Radio frequency quadrupole) for the low energy proton acceleration, 2998 MHz SCDTL (Side Coupled Drift Tube Linacs) for the medium energy and 2998 MHz CCL (Coupled Cavity Linacs) for the high energy. In particular, the CCL accelerating modules are used in the energy range from 37.5 - 230 MeV. In this paper we discuss the 3D EM (electro-magnetic) simulation results and measurements of the CCL modules.oai:inspirehep.net:16913882018
spellingShingle Accelerators and Storage Rings
Khan, Vasim
De Michele, Giovanni
Esposito, Marco
Fanella, Stefano
Gibson, Stephen
Gradassi, Paolo
Ivanisenko, Yevgeniy
Mellace, Claudio
Navarro Quirante, Jose Luis
Zannini, Carlo
Simulations and Measurements of the CCL Modules of the LIGHT Accelerator
title Simulations and Measurements of the CCL Modules of the LIGHT Accelerator
title_full Simulations and Measurements of the CCL Modules of the LIGHT Accelerator
title_fullStr Simulations and Measurements of the CCL Modules of the LIGHT Accelerator
title_full_unstemmed Simulations and Measurements of the CCL Modules of the LIGHT Accelerator
title_short Simulations and Measurements of the CCL Modules of the LIGHT Accelerator
title_sort simulations and measurements of the ccl modules of the light accelerator
topic Accelerators and Storage Rings
url https://dx.doi.org/10.18429/JACoW-IPAC2018-MOPML015
http://cds.cern.ch/record/2665491
work_keys_str_mv AT khanvasim simulationsandmeasurementsofthecclmodulesofthelightaccelerator
AT demichelegiovanni simulationsandmeasurementsofthecclmodulesofthelightaccelerator
AT espositomarco simulationsandmeasurementsofthecclmodulesofthelightaccelerator
AT fanellastefano simulationsandmeasurementsofthecclmodulesofthelightaccelerator
AT gibsonstephen simulationsandmeasurementsofthecclmodulesofthelightaccelerator
AT gradassipaolo simulationsandmeasurementsofthecclmodulesofthelightaccelerator
AT ivanisenkoyevgeniy simulationsandmeasurementsofthecclmodulesofthelightaccelerator
AT mellaceclaudio simulationsandmeasurementsofthecclmodulesofthelightaccelerator
AT navarroquirantejoseluis simulationsandmeasurementsofthecclmodulesofthelightaccelerator
AT zanninicarlo simulationsandmeasurementsofthecclmodulesofthelightaccelerator