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Commissioning of a beam screen test bench experiment with a future circular hadron collider type synchrotron radiation beam

Coping with synchrotron radiation (SR) that originated at superconducting bending magnets is one of the major challenges in the design of the vacuum beam pipes of hadron colliders. In the case of the Future Circular hadron Collider (FCC-hh), similarly as for the LHC, a beam screen, operating at high...

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Autores principales: Gonzalez, L A, Gil-Costa, M, Baglin, V, Chiggiato, P, Garion, C, Kersevan, R, Casalbuoni, S, Huttel, E, Bellafont, I, Perez, F
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevAccelBeams.22.083201
http://cds.cern.ch/record/2689814
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author Gonzalez, L A
Gil-Costa, M
Baglin, V
Chiggiato, P
Garion, C
Kersevan, R
Casalbuoni, S
Huttel, E
Bellafont, I
Perez, F
author_facet Gonzalez, L A
Gil-Costa, M
Baglin, V
Chiggiato, P
Garion, C
Kersevan, R
Casalbuoni, S
Huttel, E
Bellafont, I
Perez, F
author_sort Gonzalez, L A
collection CERN
description Coping with synchrotron radiation (SR) that originated at superconducting bending magnets is one of the major challenges in the design of the vacuum beam pipes of hadron colliders. In the case of the Future Circular hadron Collider (FCC-hh), similarly as for the LHC, a beam screen, operating at higher temperatures than the cold mass, has been designed in order to preserve the superconducting magnet cold bores from direct synchrotron irradiation. The quality of the beam screen vacuum can be severely compromised by the absorption of SR into its walls, enhancing the risk for numerous beam detrimental effects to arise. In order to experimentally study such effects and develop strategies for their minimization, a beam screen test bench experiment (BESTEX) has been conceived and installed in the Karlsruhe Research Accelerator storage ring at the Karlsruhe Institute for Technology. The BESTEX has been designed to explore photon stimulated desorption, photon reflectivity, photon heat loads, and photoelectron generation originated on beam screen prototypes under irradiation of the FCC-hh-like SR spectrum. A detailed description of the BESTEX, its commissioning, and its functionality is hereby presented.
id oai-inspirehep.net-1752098
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
record_format invenio
spelling oai-inspirehep.net-17520982022-08-10T12:23:29Zdoi:10.1103/PhysRevAccelBeams.22.083201http://cds.cern.ch/record/2689814engGonzalez, L AGil-Costa, MBaglin, VChiggiato, PGarion, CKersevan, RCasalbuoni, SHuttel, EBellafont, IPerez, FCommissioning of a beam screen test bench experiment with a future circular hadron collider type synchrotron radiation beamAccelerators and Storage RingsCoping with synchrotron radiation (SR) that originated at superconducting bending magnets is one of the major challenges in the design of the vacuum beam pipes of hadron colliders. In the case of the Future Circular hadron Collider (FCC-hh), similarly as for the LHC, a beam screen, operating at higher temperatures than the cold mass, has been designed in order to preserve the superconducting magnet cold bores from direct synchrotron irradiation. The quality of the beam screen vacuum can be severely compromised by the absorption of SR into its walls, enhancing the risk for numerous beam detrimental effects to arise. In order to experimentally study such effects and develop strategies for their minimization, a beam screen test bench experiment (BESTEX) has been conceived and installed in the Karlsruhe Research Accelerator storage ring at the Karlsruhe Institute for Technology. The BESTEX has been designed to explore photon stimulated desorption, photon reflectivity, photon heat loads, and photoelectron generation originated on beam screen prototypes under irradiation of the FCC-hh-like SR spectrum. A detailed description of the BESTEX, its commissioning, and its functionality is hereby presented.oai:inspirehep.net:17520982019
spellingShingle Accelerators and Storage Rings
Gonzalez, L A
Gil-Costa, M
Baglin, V
Chiggiato, P
Garion, C
Kersevan, R
Casalbuoni, S
Huttel, E
Bellafont, I
Perez, F
Commissioning of a beam screen test bench experiment with a future circular hadron collider type synchrotron radiation beam
title Commissioning of a beam screen test bench experiment with a future circular hadron collider type synchrotron radiation beam
title_full Commissioning of a beam screen test bench experiment with a future circular hadron collider type synchrotron radiation beam
title_fullStr Commissioning of a beam screen test bench experiment with a future circular hadron collider type synchrotron radiation beam
title_full_unstemmed Commissioning of a beam screen test bench experiment with a future circular hadron collider type synchrotron radiation beam
title_short Commissioning of a beam screen test bench experiment with a future circular hadron collider type synchrotron radiation beam
title_sort commissioning of a beam screen test bench experiment with a future circular hadron collider type synchrotron radiation beam
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1103/PhysRevAccelBeams.22.083201
http://cds.cern.ch/record/2689814
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