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The ATLAS Intensity upgrade: Project overview and online operating experience

ATLAS, the world's first accelerator to use RF superconductivity for ion acceleration, has undergone a major facility upgrade with the goals of significantly increased stable-beam current for experiments and improved transmission for all beams. The dominant components of the upgrade are a) new...

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Autores principales: Pardo, Richard, Barcikowski, Albert, Conway, Zachary, Dickerson, Clayton, Hendricks, Matthew, Kelly, Michael, Kim, Sang-Hoon, Luo, Yong, MacDonald, Stephen, Mustapha, Brahim, Ostroumov, Peter, Peters, Christopher, Power, Maria, Scott, Robert, Sharamentov, Sergey, Vondrasek, Richard, Zinkann, Gary
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.18429/JACoW-HIAT2015-WEM1C03
http://cds.cern.ch/record/2292783
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author Pardo, Richard
Barcikowski, Albert
Conway, Zachary
Dickerson, Clayton
Hendricks, Matthew
Kelly, Michael
Kim, Sang-Hoon
Luo, Yong
MacDonald, Stephen
Mustapha, Brahim
Ostroumov, Peter
Peters, Christopher
Power, Maria
Scott, Robert
Sharamentov, Sergey
Vondrasek, Richard
Zinkann, Gary
author_facet Pardo, Richard
Barcikowski, Albert
Conway, Zachary
Dickerson, Clayton
Hendricks, Matthew
Kelly, Michael
Kim, Sang-Hoon
Luo, Yong
MacDonald, Stephen
Mustapha, Brahim
Ostroumov, Peter
Peters, Christopher
Power, Maria
Scott, Robert
Sharamentov, Sergey
Vondrasek, Richard
Zinkann, Gary
author_sort Pardo, Richard
collection CERN
description ATLAS, the world's first accelerator to use RF superconductivity for ion acceleration, has undergone a major facility upgrade with the goals of significantly increased stable-beam current for experiments and improved transmission for all beams. The dominant components of the upgrade are a) new CW-RFQ to replace the first three low β resonators, b) a new cryostat of seven β=0.077 quarter-wave resonators demonstrating world-record accelerating fields, c) an improved cryogenics system, and d) the retirement of the original tandem injector. This latest upgrade followed closely on the earlier development of a cryostat of β=0.144 quarter-wave resonators. This reconfigured ATLAS system has been in operation for over one year. This paper will discuss the on-line performance achieved for the redesigned system, plans for further improvement, and long term facility plans for new performance capabilities. This work was supported by the U.S. Department of Energy, Office of Nuclear Physics, under Contract No. DE-AC02-06CH11357. This research used resources of ANL's ATLAS facility, which is a DOE Office of Science User Facility.
id oai-inspirehep.net-1480557
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
record_format invenio
spelling oai-inspirehep.net-14805572019-09-30T06:29:59Zdoi:10.18429/JACoW-HIAT2015-WEM1C03http://cds.cern.ch/record/2292783engPardo, RichardBarcikowski, AlbertConway, ZacharyDickerson, ClaytonHendricks, MatthewKelly, MichaelKim, Sang-HoonLuo, YongMacDonald, StephenMustapha, BrahimOstroumov, PeterPeters, ChristopherPower, MariaScott, RobertSharamentov, SergeyVondrasek, RichardZinkann, GaryThe ATLAS Intensity upgrade: Project overview and online operating experienceAccelerators and Storage RingsATLAS, the world's first accelerator to use RF superconductivity for ion acceleration, has undergone a major facility upgrade with the goals of significantly increased stable-beam current for experiments and improved transmission for all beams. The dominant components of the upgrade are a) new CW-RFQ to replace the first three low β resonators, b) a new cryostat of seven β=0.077 quarter-wave resonators demonstrating world-record accelerating fields, c) an improved cryogenics system, and d) the retirement of the original tandem injector. This latest upgrade followed closely on the earlier development of a cryostat of β=0.144 quarter-wave resonators. This reconfigured ATLAS system has been in operation for over one year. This paper will discuss the on-line performance achieved for the redesigned system, plans for further improvement, and long term facility plans for new performance capabilities. This work was supported by the U.S. Department of Energy, Office of Nuclear Physics, under Contract No. DE-AC02-06CH11357. This research used resources of ANL's ATLAS facility, which is a DOE Office of Science User Facility.oai:inspirehep.net:14805572016
spellingShingle Accelerators and Storage Rings
Pardo, Richard
Barcikowski, Albert
Conway, Zachary
Dickerson, Clayton
Hendricks, Matthew
Kelly, Michael
Kim, Sang-Hoon
Luo, Yong
MacDonald, Stephen
Mustapha, Brahim
Ostroumov, Peter
Peters, Christopher
Power, Maria
Scott, Robert
Sharamentov, Sergey
Vondrasek, Richard
Zinkann, Gary
The ATLAS Intensity upgrade: Project overview and online operating experience
title The ATLAS Intensity upgrade: Project overview and online operating experience
title_full The ATLAS Intensity upgrade: Project overview and online operating experience
title_fullStr The ATLAS Intensity upgrade: Project overview and online operating experience
title_full_unstemmed The ATLAS Intensity upgrade: Project overview and online operating experience
title_short The ATLAS Intensity upgrade: Project overview and online operating experience
title_sort atlas intensity upgrade: project overview and online operating experience
topic Accelerators and Storage Rings
url https://dx.doi.org/10.18429/JACoW-HIAT2015-WEM1C03
http://cds.cern.ch/record/2292783
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