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The development programme of cathodes and electron guns for the hollow electron lenses of the High Luminosity LHC project

The High Luminosity LHC project (HL-LHC) foresees the construction and installation of important new equipment to increase the performance of the LHC machine. The Hollow Electron Lens (HEL) is a promising system to control the beam halo. It improves the beam collimation system of the HL-LHC and miti...

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Autores principales: Perini, Diego, Crawford, Darren, Feng, Jinjun, Gobbi, Giorgia, Li, Zepeng, Liu, Wei, Ruan, Jinhao, Shao, Wensheng, Stancari, Giulio, Valerio, Linda, Wang, Jinshu, Wang, Yiman, Yang, Yunfei, Zhang, Ke
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:https://dx.doi.org/10.18429/JACoW-IPAC2019-MOPTS099
http://cds.cern.ch/record/2694239
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author Perini, Diego
Crawford, Darren
Feng, Jinjun
Gobbi, Giorgia
Li, Zepeng
Liu, Wei
Ruan, Jinhao
Shao, Wensheng
Stancari, Giulio
Valerio, Linda
Wang, Jinshu
Wang, Yiman
Yang, Yunfei
Zhang, Ke
author_facet Perini, Diego
Crawford, Darren
Feng, Jinjun
Gobbi, Giorgia
Li, Zepeng
Liu, Wei
Ruan, Jinhao
Shao, Wensheng
Stancari, Giulio
Valerio, Linda
Wang, Jinshu
Wang, Yiman
Yang, Yunfei
Zhang, Ke
author_sort Perini, Diego
collection CERN
description The High Luminosity LHC project (HL-LHC) foresees the construction and installation of important new equipment to increase the performance of the LHC machine. The Hollow Electron Lens (HEL) is a promising system to control the beam halo. It improves the beam collimation system of the HL-LHC and mitigates possible equipment damage in case of failure scenarios from halo losses. The halo can store up to 30 MJ energy. The specifications for this new device are quite demanding. The source, an electron gun with an annular shaped cathode, has to deliver a current up to 5 A. This is five times higher than the current in the existing electron lenses in Fermi and Brookhaven national laboratories. This note describes the programme carried out to design and test high-perveance guns equipped with two types of high-performance scandate cathodes. The size of the final gun is now considerably smaller than the one of the first prototype, allowing a reduction of diameter and cost of the superconducting magnet system used to steer the electron beam. The tests carried out at FNAL, BVERI and BJUT demonstrated that the developed cathodes fulfil the specifications and can supply a 5 A fully Space Charge Limited (SCL) current.
id oai-inspirehep.net-1745020
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
record_format invenio
spelling oai-inspirehep.net-17450202022-04-05T15:14:05Zdoi:10.18429/JACoW-IPAC2019-MOPTS099http://cds.cern.ch/record/2694239engPerini, DiegoCrawford, DarrenFeng, JinjunGobbi, GiorgiaLi, ZepengLiu, WeiRuan, JinhaoShao, WenshengStancari, GiulioValerio, LindaWang, JinshuWang, YimanYang, YunfeiZhang, KeThe development programme of cathodes and electron guns for the hollow electron lenses of the High Luminosity LHC projectAccelerators and Storage RingsThe High Luminosity LHC project (HL-LHC) foresees the construction and installation of important new equipment to increase the performance of the LHC machine. The Hollow Electron Lens (HEL) is a promising system to control the beam halo. It improves the beam collimation system of the HL-LHC and mitigates possible equipment damage in case of failure scenarios from halo losses. The halo can store up to 30 MJ energy. The specifications for this new device are quite demanding. The source, an electron gun with an annular shaped cathode, has to deliver a current up to 5 A. This is five times higher than the current in the existing electron lenses in Fermi and Brookhaven national laboratories. This note describes the programme carried out to design and test high-perveance guns equipped with two types of high-performance scandate cathodes. The size of the final gun is now considerably smaller than the one of the first prototype, allowing a reduction of diameter and cost of the superconducting magnet system used to steer the electron beam. The tests carried out at FNAL, BVERI and BJUT demonstrated that the developed cathodes fulfil the specifications and can supply a 5 A fully Space Charge Limited (SCL) current.CERN-ACC-2019-170oai:inspirehep.net:17450202019
spellingShingle Accelerators and Storage Rings
Perini, Diego
Crawford, Darren
Feng, Jinjun
Gobbi, Giorgia
Li, Zepeng
Liu, Wei
Ruan, Jinhao
Shao, Wensheng
Stancari, Giulio
Valerio, Linda
Wang, Jinshu
Wang, Yiman
Yang, Yunfei
Zhang, Ke
The development programme of cathodes and electron guns for the hollow electron lenses of the High Luminosity LHC project
title The development programme of cathodes and electron guns for the hollow electron lenses of the High Luminosity LHC project
title_full The development programme of cathodes and electron guns for the hollow electron lenses of the High Luminosity LHC project
title_fullStr The development programme of cathodes and electron guns for the hollow electron lenses of the High Luminosity LHC project
title_full_unstemmed The development programme of cathodes and electron guns for the hollow electron lenses of the High Luminosity LHC project
title_short The development programme of cathodes and electron guns for the hollow electron lenses of the High Luminosity LHC project
title_sort development programme of cathodes and electron guns for the hollow electron lenses of the high luminosity lhc project
topic Accelerators and Storage Rings
url https://dx.doi.org/10.18429/JACoW-IPAC2019-MOPTS099
http://cds.cern.ch/record/2694239
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