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A Method for Obtaining 3D Charge Density Distribution of a Self-Modulated Proton Bunch

The Advanced Wakefield Experiment (AWAKE) at CERN is the first plasma wakefield accelerator experiment to use a proton bunch as driver. The long bunch undergoes seeded self-modulation (SSM) in a 10 m-long plasma. SSM transforms the bunch into a train of short micro-bunches that resonantly drive high...

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Detalles Bibliográficos
Autores principales: Nechaeva, Tatiana, Muggli, Patric, Verra, Livio, Zevi Della Porta, Giovanni
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:https://dx.doi.org/10.18429/JACoW-IPAC2022-FROXGD1
http://cds.cern.ch/record/2845824
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author Nechaeva, Tatiana
Muggli, Patric
Verra, Livio
Zevi Della Porta, Giovanni
author_facet Nechaeva, Tatiana
Muggli, Patric
Verra, Livio
Zevi Della Porta, Giovanni
author_sort Nechaeva, Tatiana
collection CERN
description The Advanced Wakefield Experiment (AWAKE) at CERN is the first plasma wakefield accelerator experiment to use a proton bunch as driver. The long bunch undergoes seeded self-modulation (SSM) in a 10 m-long plasma. SSM transforms the bunch into a train of short micro-bunches that resonantly drive high-amplitude wakefields. We use optical transition radiation (OTR) and a streak camera to obtain time-resolved images of the bunch transverse charge density distribution in a given plane. In this paper we present a method to obtain 3D images of the bunch by scanning the OTR across the entrance slit of the streak camera. Reconstruction of the 3D distribution is possible because with seeding self-modulation is reproducible*. The 3D images allow for checking the axi-symmetry of SSM and for detecting the possible presence of the non-axi-symmetric hosing instability (HI).
id cern-2845824
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28458242023-01-11T21:31:23Zdoi:10.18429/JACoW-IPAC2022-FROXGD1http://cds.cern.ch/record/2845824engNechaeva, TatianaMuggli, PatricVerra, LivioZevi Della Porta, GiovanniA Method for Obtaining 3D Charge Density Distribution of a Self-Modulated Proton BunchAccelerators and Storage RingsThe Advanced Wakefield Experiment (AWAKE) at CERN is the first plasma wakefield accelerator experiment to use a proton bunch as driver. The long bunch undergoes seeded self-modulation (SSM) in a 10 m-long plasma. SSM transforms the bunch into a train of short micro-bunches that resonantly drive high-amplitude wakefields. We use optical transition radiation (OTR) and a streak camera to obtain time-resolved images of the bunch transverse charge density distribution in a given plane. In this paper we present a method to obtain 3D images of the bunch by scanning the OTR across the entrance slit of the streak camera. Reconstruction of the 3D distribution is possible because with seeding self-modulation is reproducible*. The 3D images allow for checking the axi-symmetry of SSM and for detecting the possible presence of the non-axi-symmetric hosing instability (HI).oai:cds.cern.ch:28458242022
spellingShingle Accelerators and Storage Rings
Nechaeva, Tatiana
Muggli, Patric
Verra, Livio
Zevi Della Porta, Giovanni
A Method for Obtaining 3D Charge Density Distribution of a Self-Modulated Proton Bunch
title A Method for Obtaining 3D Charge Density Distribution of a Self-Modulated Proton Bunch
title_full A Method for Obtaining 3D Charge Density Distribution of a Self-Modulated Proton Bunch
title_fullStr A Method for Obtaining 3D Charge Density Distribution of a Self-Modulated Proton Bunch
title_full_unstemmed A Method for Obtaining 3D Charge Density Distribution of a Self-Modulated Proton Bunch
title_short A Method for Obtaining 3D Charge Density Distribution of a Self-Modulated Proton Bunch
title_sort method for obtaining 3d charge density distribution of a self-modulated proton bunch
topic Accelerators and Storage Rings
url https://dx.doi.org/10.18429/JACoW-IPAC2022-FROXGD1
http://cds.cern.ch/record/2845824
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