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A First Baseline for the Magnets in the High Luminosity LHC Insertion Regions

The High Luminosity LHC (HL-LHC) project aims at accumulating 3000 fb-1 in the years 2023-2035, i.e. ten times more w.r.t. the nominal LHC performance expected for 2010- 2021. One key element to reach this challenging performance is a new insertion region to reduce the beam size in the interaction p...

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Detalles Bibliográficos
Autores principales: Todesco, E, Allain, H, Ambrosio, G, Arduini, G, Cerutti, F, De Maria, R, Esposito, L, Fartoukh, S, Ferracin, P, Felice, H, Gupta, R, Kersevan, R, Mokhov, N, Nakamoto, T, Rakno, I, Rifflet, J M, Rossi, L, Sabbi, G L, Segreti, M, Toral, F, Xu, Q, Wanderer, P, van Weelderen, R
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TASC.2013.2288603
http://cds.cern.ch/record/1662723
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author Todesco, E
Allain, H
Ambrosio, G
Arduini, G
Cerutti, F
De Maria, R
Esposito, L
Fartoukh, S
Ferracin, P
Felice, H
Gupta, R
Kersevan, R
Mokhov, N
Nakamoto, T
Rakno, I
Rifflet, J M
Rossi, L
Sabbi, G L
Segreti, M
Toral, F
Xu, Q
Wanderer, P
van Weelderen, R
author_facet Todesco, E
Allain, H
Ambrosio, G
Arduini, G
Cerutti, F
De Maria, R
Esposito, L
Fartoukh, S
Ferracin, P
Felice, H
Gupta, R
Kersevan, R
Mokhov, N
Nakamoto, T
Rakno, I
Rifflet, J M
Rossi, L
Sabbi, G L
Segreti, M
Toral, F
Xu, Q
Wanderer, P
van Weelderen, R
author_sort Todesco, E
collection CERN
description The High Luminosity LHC (HL-LHC) project aims at accumulating 3000 fb-1 in the years 2023-2035, i.e. ten times more w.r.t. the nominal LHC performance expected for 2010- 2021. One key element to reach this challenging performance is a new insertion region to reduce the beam size in the interaction point by approximately a factor two. This requires larger aperture magnets in the region spanning from the interaction point to the matching section quadrupoles. This aperture has been fixed to 150 mm for the inner triplet quadrupoles in 2012. In this paper we give a first baseline of the interaction region. We discuss the main motivations that lead us to choose the technology, the combination of fields/gradients and lengths, the apertures, the quantity of superconductor, and the operational margin. Key elements are also the constraints given by the energy deposition in terms of heat load and radiation damage; we present the main features related to shielding and heat removal.
id cern-1662723
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
record_format invenio
spelling cern-16627232019-09-30T06:29:59Zdoi:10.1109/TASC.2013.2288603http://cds.cern.ch/record/1662723engTodesco, EAllain, HAmbrosio, GArduini, GCerutti, FDe Maria, REsposito, LFartoukh, SFerracin, PFelice, HGupta, RKersevan, RMokhov, NNakamoto, TRakno, IRifflet, J MRossi, LSabbi, G LSegreti, MToral, FXu, QWanderer, Pvan Weelderen, RA First Baseline for the Magnets in the High Luminosity LHC Insertion RegionsAccelerators and Storage RingsThe High Luminosity LHC (HL-LHC) project aims at accumulating 3000 fb-1 in the years 2023-2035, i.e. ten times more w.r.t. the nominal LHC performance expected for 2010- 2021. One key element to reach this challenging performance is a new insertion region to reduce the beam size in the interaction point by approximately a factor two. This requires larger aperture magnets in the region spanning from the interaction point to the matching section quadrupoles. This aperture has been fixed to 150 mm for the inner triplet quadrupoles in 2012. In this paper we give a first baseline of the interaction region. We discuss the main motivations that lead us to choose the technology, the combination of fields/gradients and lengths, the apertures, the quantity of superconductor, and the operational margin. Key elements are also the constraints given by the energy deposition in terms of heat load and radiation damage; we present the main features related to shielding and heat removal.CERN-ACC-2014-0036oai:cds.cern.ch:16627232014-02-20
spellingShingle Accelerators and Storage Rings
Todesco, E
Allain, H
Ambrosio, G
Arduini, G
Cerutti, F
De Maria, R
Esposito, L
Fartoukh, S
Ferracin, P
Felice, H
Gupta, R
Kersevan, R
Mokhov, N
Nakamoto, T
Rakno, I
Rifflet, J M
Rossi, L
Sabbi, G L
Segreti, M
Toral, F
Xu, Q
Wanderer, P
van Weelderen, R
A First Baseline for the Magnets in the High Luminosity LHC Insertion Regions
title A First Baseline for the Magnets in the High Luminosity LHC Insertion Regions
title_full A First Baseline for the Magnets in the High Luminosity LHC Insertion Regions
title_fullStr A First Baseline for the Magnets in the High Luminosity LHC Insertion Regions
title_full_unstemmed A First Baseline for the Magnets in the High Luminosity LHC Insertion Regions
title_short A First Baseline for the Magnets in the High Luminosity LHC Insertion Regions
title_sort first baseline for the magnets in the high luminosity lhc insertion regions
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1109/TASC.2013.2288603
http://cds.cern.ch/record/1662723
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