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$^{22}$Na activation level measurements of fused silica rods in the LHC target absorber for neutrals compared to simulations

The Target Absorbers for Neutrals (TANs) are located in a high-intensity radiation environment inside the tunnel of the Large Hadron Collider (LHC). TANs are positioned about $140$ m downstream from the beam interaction points. Seven $40$ cm long fused silica rods with different dopant specification...

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Autores principales: Yang, S., Gilarte, M. Sabate, Tate, A., Santiago, N., Longo, R., Mazzoni, S., Cerutti, F., Bravin, E., Grosse Perdekamp, M., Lerner, G., Prelipcean, D., Citron, Z., Cole, B., Jackobsen, S., Kaminski, M.D., Koeth, T., Lantz, C., MacLean, D., Mignerey, A., Murray, M., Palm, M., Phipps, M., Steinberg, P., Tsinganis, A.
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevAccelBeams.25.091001
http://cds.cern.ch/record/2836032
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author Yang, S.
Gilarte, M. Sabate
Tate, A.
Santiago, N.
Longo, R.
Mazzoni, S.
Cerutti, F.
Bravin, E.
Grosse Perdekamp, M.
Lerner, G.
Prelipcean, D.
Citron, Z.
Cole, B.
Jackobsen, S.
Kaminski, M.D.
Koeth, T.
Lantz, C.
MacLean, D.
Mignerey, A.
Murray, M.
Palm, M.
Phipps, M.
Steinberg, P.
Tsinganis, A.
author_facet Yang, S.
Gilarte, M. Sabate
Tate, A.
Santiago, N.
Longo, R.
Mazzoni, S.
Cerutti, F.
Bravin, E.
Grosse Perdekamp, M.
Lerner, G.
Prelipcean, D.
Citron, Z.
Cole, B.
Jackobsen, S.
Kaminski, M.D.
Koeth, T.
Lantz, C.
MacLean, D.
Mignerey, A.
Murray, M.
Palm, M.
Phipps, M.
Steinberg, P.
Tsinganis, A.
author_sort Yang, S.
collection CERN
description The Target Absorbers for Neutrals (TANs) are located in a high-intensity radiation environment inside the tunnel of the Large Hadron Collider (LHC). TANs are positioned about $140$ m downstream from the beam interaction points. Seven $40$ cm long fused silica rods with different dopant specifications were irradiated in the TAN by the Beam RAte of Neutrals (BRAN) detector group during $p$+$p$ data taking from 2016 to 2018 at the LHC. The peak dose delivered to the fused silica rods was $18$ MGy. We report measurements of the $^{22}$Na activation of the fused silica rods carried out at the University of Illinois at Urbana-Champaign and Argonne National Laboratory. At the end of the irradiation campaign, the maximum $^{22}$Na activity observed was $A=21$ kBq$/{\rm cm^3}$ corresponding to a density, $\rho= 2.5\times 10^{12} /{\rm cm^3}$, of $^{22}$Na nuclei. FLUKA Monte Carlo simulations have been performed by the CERN FLUKA team to estimate $^{22}$Na activities for the irradiated BRAN rod samples. The simulations reproduce the $^{22}$Na activity profile measured along the rods, with a 35% underestimation of the experimental measurement results.
id cern-2836032
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28360322023-08-09T12:19:44Zdoi:10.1103/PhysRevAccelBeams.25.091001http://cds.cern.ch/record/2836032engYang, S.Gilarte, M. SabateTate, A.Santiago, N.Longo, R.Mazzoni, S.Cerutti, F.Bravin, E.Grosse Perdekamp, M.Lerner, G.Prelipcean, D.Citron, Z.Cole, B.Jackobsen, S.Kaminski, M.D.Koeth, T.Lantz, C.MacLean, D.Mignerey, A.Murray, M.Palm, M.Phipps, M.Steinberg, P.Tsinganis, A.$^{22}$Na activation level measurements of fused silica rods in the LHC target absorber for neutrals compared to simulationsphysics.acc-phphysics.ins-detAccelerators and Storage RingsDetectors and Experimental TechniquesThe Target Absorbers for Neutrals (TANs) are located in a high-intensity radiation environment inside the tunnel of the Large Hadron Collider (LHC). TANs are positioned about $140$ m downstream from the beam interaction points. Seven $40$ cm long fused silica rods with different dopant specifications were irradiated in the TAN by the Beam RAte of Neutrals (BRAN) detector group during $p$+$p$ data taking from 2016 to 2018 at the LHC. The peak dose delivered to the fused silica rods was $18$ MGy. We report measurements of the $^{22}$Na activation of the fused silica rods carried out at the University of Illinois at Urbana-Champaign and Argonne National Laboratory. At the end of the irradiation campaign, the maximum $^{22}$Na activity observed was $A=21$ kBq$/{\rm cm^3}$ corresponding to a density, $\rho= 2.5\times 10^{12} /{\rm cm^3}$, of $^{22}$Na nuclei. FLUKA Monte Carlo simulations have been performed by the CERN FLUKA team to estimate $^{22}$Na activities for the irradiated BRAN rod samples. The simulations reproduce the $^{22}$Na activity profile measured along the rods, with a 35% underestimation of the experimental measurement results.arXiv:2204.01937oai:cds.cern.ch:28360322022-04-04
spellingShingle physics.acc-ph
physics.ins-det
Accelerators and Storage Rings
Detectors and Experimental Techniques
Yang, S.
Gilarte, M. Sabate
Tate, A.
Santiago, N.
Longo, R.
Mazzoni, S.
Cerutti, F.
Bravin, E.
Grosse Perdekamp, M.
Lerner, G.
Prelipcean, D.
Citron, Z.
Cole, B.
Jackobsen, S.
Kaminski, M.D.
Koeth, T.
Lantz, C.
MacLean, D.
Mignerey, A.
Murray, M.
Palm, M.
Phipps, M.
Steinberg, P.
Tsinganis, A.
$^{22}$Na activation level measurements of fused silica rods in the LHC target absorber for neutrals compared to simulations
title $^{22}$Na activation level measurements of fused silica rods in the LHC target absorber for neutrals compared to simulations
title_full $^{22}$Na activation level measurements of fused silica rods in the LHC target absorber for neutrals compared to simulations
title_fullStr $^{22}$Na activation level measurements of fused silica rods in the LHC target absorber for neutrals compared to simulations
title_full_unstemmed $^{22}$Na activation level measurements of fused silica rods in the LHC target absorber for neutrals compared to simulations
title_short $^{22}$Na activation level measurements of fused silica rods in the LHC target absorber for neutrals compared to simulations
title_sort $^{22}$na activation level measurements of fused silica rods in the lhc target absorber for neutrals compared to simulations
topic physics.acc-ph
physics.ins-det
Accelerators and Storage Rings
Detectors and Experimental Techniques
url https://dx.doi.org/10.1103/PhysRevAccelBeams.25.091001
http://cds.cern.ch/record/2836032
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