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Cell Geometry Optimization for Dipole Kick Correction in a High-Frequency IH Structure

Given the asymmetry in the stem configuration of an IH-DTL structure, an electric dipole component is always present between drift tubes, and it is especially significant for reduced dimensions in high-frequency regimes. Here we study the effect of different modifications of the drift tubes geometry...

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Autores principales: López López, Ricardo, Battaglia, Maria Cristina, Calvo, Pedro, Carmona, José Miguel, Gavela, Daniel, Giner Navarro, Jorge, Lombardi, Alessandra, Moreno, Gabriela, Oliver, Concepcion, Pérez Morales, Jose
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:https://dx.doi.org/10.18429/JACoW-LINAC2022-MOPOGE04
http://cds.cern.ch/record/2844847
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author López López, Ricardo
Battaglia, Maria Cristina
Calvo, Pedro
Carmona, José Miguel
Gavela, Daniel
Giner Navarro, Jorge
Lombardi, Alessandra
Moreno, Gabriela
Oliver, Concepcion
Pérez Morales, Jose
author_facet López López, Ricardo
Battaglia, Maria Cristina
Calvo, Pedro
Carmona, José Miguel
Gavela, Daniel
Giner Navarro, Jorge
Lombardi, Alessandra
Moreno, Gabriela
Oliver, Concepcion
Pérez Morales, Jose
author_sort López López, Ricardo
collection CERN
description Given the asymmetry in the stem configuration of an IH-DTL structure, an electric dipole component is always present between drift tubes, and it is especially significant for reduced dimensions in high-frequency regimes. Here we study the effect of different modifications of the drift tubes geometry of a 750 MHz IH-DTL to eliminate the impact of the dipole component in the transverse beam dynamics. Tracking simulations through a single cell are also performed to assess the outcomes in particle’s trajectory offset and angle.
id cern-2844847
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28448472022-12-18T20:51:49Zdoi:10.18429/JACoW-LINAC2022-MOPOGE04http://cds.cern.ch/record/2844847engLópez López, RicardoBattaglia, Maria CristinaCalvo, PedroCarmona, José MiguelGavela, DanielGiner Navarro, JorgeLombardi, AlessandraMoreno, GabrielaOliver, ConcepcionPérez Morales, JoseCell Geometry Optimization for Dipole Kick Correction in a High-Frequency IH StructureAccelerators and Storage RingsGiven the asymmetry in the stem configuration of an IH-DTL structure, an electric dipole component is always present between drift tubes, and it is especially significant for reduced dimensions in high-frequency regimes. Here we study the effect of different modifications of the drift tubes geometry of a 750 MHz IH-DTL to eliminate the impact of the dipole component in the transverse beam dynamics. Tracking simulations through a single cell are also performed to assess the outcomes in particle’s trajectory offset and angle.oai:cds.cern.ch:28448472022
spellingShingle Accelerators and Storage Rings
López López, Ricardo
Battaglia, Maria Cristina
Calvo, Pedro
Carmona, José Miguel
Gavela, Daniel
Giner Navarro, Jorge
Lombardi, Alessandra
Moreno, Gabriela
Oliver, Concepcion
Pérez Morales, Jose
Cell Geometry Optimization for Dipole Kick Correction in a High-Frequency IH Structure
title Cell Geometry Optimization for Dipole Kick Correction in a High-Frequency IH Structure
title_full Cell Geometry Optimization for Dipole Kick Correction in a High-Frequency IH Structure
title_fullStr Cell Geometry Optimization for Dipole Kick Correction in a High-Frequency IH Structure
title_full_unstemmed Cell Geometry Optimization for Dipole Kick Correction in a High-Frequency IH Structure
title_short Cell Geometry Optimization for Dipole Kick Correction in a High-Frequency IH Structure
title_sort cell geometry optimization for dipole kick correction in a high-frequency ih structure
topic Accelerators and Storage Rings
url https://dx.doi.org/10.18429/JACoW-LINAC2022-MOPOGE04
http://cds.cern.ch/record/2844847
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