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Test Results of the First 3.7 m long Nb$_3$Sn Quadrupole by LARP and Future Plans
In December 2009 during its first cold test, LQS01, the first Long Nb$_3$Sn Quadrupole made by LARP (LHC Accelerator Research Program, a collaboration of BNL, FNAL, LBNL and SLAC), reached its target field gradient of 200 T/m. This target was set in 2005 by the US Department of Energy, CERN and LARP...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2010
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1109/TASC.2010.2089586 http://cds.cern.ch/record/2773926 |
_version_ | 1780971634810683392 |
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author | Ambrosio, G Andreev, N Anerella, M Barzi, E Bingham, B Bocian, D Bossert, R Caspi, S Chlachidize, G Dietderich, D Escallier, J Felice, H Ferracin, P Ghosh, A Godeke, A Hafalia, R Hannaford, R Jochen, G Kashikhin, V V Kim, M J Kovach, P Lamm, M McInturff, A Muratore, J Nobrega, F Novitsky, I Orris, D Prebys, E Prestemon, S Sabbi, G L Schmalzle, J Sylvester, C Tartaglia, M Turrioni, D Velev, G Wanderer, P Whitson, G Zlobin, A V |
author_facet | Ambrosio, G Andreev, N Anerella, M Barzi, E Bingham, B Bocian, D Bossert, R Caspi, S Chlachidize, G Dietderich, D Escallier, J Felice, H Ferracin, P Ghosh, A Godeke, A Hafalia, R Hannaford, R Jochen, G Kashikhin, V V Kim, M J Kovach, P Lamm, M McInturff, A Muratore, J Nobrega, F Novitsky, I Orris, D Prebys, E Prestemon, S Sabbi, G L Schmalzle, J Sylvester, C Tartaglia, M Turrioni, D Velev, G Wanderer, P Whitson, G Zlobin, A V |
author_sort | Ambrosio, G |
collection | CERN |
description | In December 2009 during its first cold test, LQS01, the first Long Nb$_3$Sn Quadrupole made by LARP (LHC Accelerator Research Program, a collaboration of BNL, FNAL, LBNL and SLAC), reached its target field gradient of 200 T/m. This target was set in 2005 by the US Department of Energy, CERN and LARP, as a significant milestone toward the development of Nb$_3$Sn quadrupoles for possible use in LHC luminosity upgrades. LQS01 is a 90 mm aperture, 3.7 m long quadrupole using Nb$_3$Sn coils. The coil layout is equal to the layout used in the LARP Technological Quadrupoles (TQC and TQS models). Pre-stress and support are provided by a segmented aluminum shell pre-loaded using bladders and keys, similarly to the TQS models. After the first test the magnet was disassembled, reassembled with an optimized pre-stress, and reached 222 T/m at 4.5 K. In this paper we present the results of both tests and the next steps of the Long Quadrupole R&D;. |
id | oai-inspirehep.net-873567 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2010 |
record_format | invenio |
spelling | oai-inspirehep.net-8735672021-10-04T14:29:44Zdoi:10.1109/TASC.2010.2089586http://cds.cern.ch/record/2773926engAmbrosio, GAndreev, NAnerella, MBarzi, EBingham, BBocian, DBossert, RCaspi, SChlachidize, GDietderich, DEscallier, JFelice, HFerracin, PGhosh, AGodeke, AHafalia, RHannaford, RJochen, GKashikhin, V VKim, M JKovach, PLamm, MMcInturff, AMuratore, JNobrega, FNovitsky, IOrris, DPrebys, EPrestemon, SSabbi, G LSchmalzle, JSylvester, CTartaglia, MTurrioni, DVelev, GWanderer, PWhitson, GZlobin, A VTest Results of the First 3.7 m long Nb$_3$Sn Quadrupole by LARP and Future PlansAccelerators and Storage RingsIn December 2009 during its first cold test, LQS01, the first Long Nb$_3$Sn Quadrupole made by LARP (LHC Accelerator Research Program, a collaboration of BNL, FNAL, LBNL and SLAC), reached its target field gradient of 200 T/m. This target was set in 2005 by the US Department of Energy, CERN and LARP, as a significant milestone toward the development of Nb$_3$Sn quadrupoles for possible use in LHC luminosity upgrades. LQS01 is a 90 mm aperture, 3.7 m long quadrupole using Nb$_3$Sn coils. The coil layout is equal to the layout used in the LARP Technological Quadrupoles (TQC and TQS models). Pre-stress and support are provided by a segmented aluminum shell pre-loaded using bladders and keys, similarly to the TQS models. After the first test the magnet was disassembled, reassembled with an optimized pre-stress, and reached 222 T/m at 4.5 K. In this paper we present the results of both tests and the next steps of the Long Quadrupole R&D;.FERMILAB-PUB-10-312-TDoai:inspirehep.net:8735672010 |
spellingShingle | Accelerators and Storage Rings Ambrosio, G Andreev, N Anerella, M Barzi, E Bingham, B Bocian, D Bossert, R Caspi, S Chlachidize, G Dietderich, D Escallier, J Felice, H Ferracin, P Ghosh, A Godeke, A Hafalia, R Hannaford, R Jochen, G Kashikhin, V V Kim, M J Kovach, P Lamm, M McInturff, A Muratore, J Nobrega, F Novitsky, I Orris, D Prebys, E Prestemon, S Sabbi, G L Schmalzle, J Sylvester, C Tartaglia, M Turrioni, D Velev, G Wanderer, P Whitson, G Zlobin, A V Test Results of the First 3.7 m long Nb$_3$Sn Quadrupole by LARP and Future Plans |
title | Test Results of the First 3.7 m long Nb$_3$Sn Quadrupole by LARP and Future Plans |
title_full | Test Results of the First 3.7 m long Nb$_3$Sn Quadrupole by LARP and Future Plans |
title_fullStr | Test Results of the First 3.7 m long Nb$_3$Sn Quadrupole by LARP and Future Plans |
title_full_unstemmed | Test Results of the First 3.7 m long Nb$_3$Sn Quadrupole by LARP and Future Plans |
title_short | Test Results of the First 3.7 m long Nb$_3$Sn Quadrupole by LARP and Future Plans |
title_sort | test results of the first 3.7 m long nb$_3$sn quadrupole by larp and future plans |
topic | Accelerators and Storage Rings |
url | https://dx.doi.org/10.1109/TASC.2010.2089586 http://cds.cern.ch/record/2773926 |
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