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Recent Developments at the High-Charge PHIN Photoinjector and the CERN Photoemission Laboratory

The high-charge PHIN photoinjector has originally been developed to study the feasibility of a photoinjector option for the drive beam of the CLIC Test Facility 3 (CTF3) at CERN and is now being used to inevestigate the feasibility of a drive beam photoinjector for CLIC. In this paper recent R&D...

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Autores principales: Hessler, C, Chevallay, E, Doebert, S, Fedosseev, V, Martini, I, Martyanov, M, Perillo Marcone, A, Sroka, S
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:http://cds.cern.ch/record/1749088
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author Hessler, C
Chevallay, E
Doebert, S
Fedosseev, V
Martini, I
Martyanov, M
Perillo Marcone, A
Sroka, S
author_facet Hessler, C
Chevallay, E
Doebert, S
Fedosseev, V
Martini, I
Martyanov, M
Perillo Marcone, A
Sroka, S
author_sort Hessler, C
collection CERN
description The high-charge PHIN photoinjector has originally been developed to study the feasibility of a photoinjector option for the drive beam of the CLIC Test Facility 3 (CTF3) at CERN and is now being used to inevestigate the feasibility of a drive beam photoinjector for CLIC. In this paper recent R&D efforts to improve the parameters of the existing system towards CLIC requirements will be discussed. This includes studies of a feedback loop for intensity stabilization, the upgrade of the PHIN vacuum system and the planned upgrade of the driving laser system. For photocathode production and R&D a dedicated photoemission laboratory is available at CERN. To increase the production rate of photocathodes and the availability of the photoemission lab for other studies, an upgrade of the photocathode preparation system with a load-lock system is under study and will also be presented.
id cern-1749088
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
record_format invenio
spelling cern-17490882022-08-17T13:30:29Zhttp://cds.cern.ch/record/1749088engHessler, CChevallay, EDoebert, SFedosseev, VMartini, IMartyanov, MPerillo Marcone, ASroka, SRecent Developments at the High-Charge PHIN Photoinjector and the CERN Photoemission LaboratoryAccelerators and Storage RingsThe high-charge PHIN photoinjector has originally been developed to study the feasibility of a photoinjector option for the drive beam of the CLIC Test Facility 3 (CTF3) at CERN and is now being used to inevestigate the feasibility of a drive beam photoinjector for CLIC. In this paper recent R&D efforts to improve the parameters of the existing system towards CLIC requirements will be discussed. This includes studies of a feedback loop for intensity stabilization, the upgrade of the PHIN vacuum system and the planned upgrade of the driving laser system. For photocathode production and R&D a dedicated photoemission laboratory is available at CERN. To increase the production rate of photocathodes and the availability of the photoemission lab for other studies, an upgrade of the photocathode preparation system with a load-lock system is under study and will also be presented.CERN-ACC-2014-0193oai:cds.cern.ch:17490882014-06-01
spellingShingle Accelerators and Storage Rings
Hessler, C
Chevallay, E
Doebert, S
Fedosseev, V
Martini, I
Martyanov, M
Perillo Marcone, A
Sroka, S
Recent Developments at the High-Charge PHIN Photoinjector and the CERN Photoemission Laboratory
title Recent Developments at the High-Charge PHIN Photoinjector and the CERN Photoemission Laboratory
title_full Recent Developments at the High-Charge PHIN Photoinjector and the CERN Photoemission Laboratory
title_fullStr Recent Developments at the High-Charge PHIN Photoinjector and the CERN Photoemission Laboratory
title_full_unstemmed Recent Developments at the High-Charge PHIN Photoinjector and the CERN Photoemission Laboratory
title_short Recent Developments at the High-Charge PHIN Photoinjector and the CERN Photoemission Laboratory
title_sort recent developments at the high-charge phin photoinjector and the cern photoemission laboratory
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1749088
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