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Experimental results of crystal-assisted slow extraction at the SPS

The possibility of extracting highly energetic particles from the Super Proton Synchrotron (SPS) by means of silicon bent crystals has been explored since the 1990's. The channelling effect of a bent crystal can be used to strongly deflect primary protons and eject them from the synchrotron. Ma...

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Autores principales: Fraser, M.A., Addesa, F., Cavoto, G., Galluccio, F., Gilardoni, S., Goddard, B., Iacoangeli, F., Kain, V., Mirarchi, D., Montesano, S., Murtas, F., Petrucci, S., Redaelli, S., Rossi, R., Scandale, W., Stoel, L., Velotti, F.M.
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:https://dx.doi.org/10.18429/JACoW-IPAC2017-MOPIK048
http://cds.cern.ch/record/2280703
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author Fraser, M.A.
Addesa, F.
Cavoto, G.
Galluccio, F.
Gilardoni, S.
Goddard, B.
Iacoangeli, F.
Kain, V.
Mirarchi, D.
Montesano, S.
Murtas, F.
Petrucci, S.
Redaelli, S.
Rossi, R.
Scandale, W.
Stoel, L.
Velotti, F.M.
author_facet Fraser, M.A.
Addesa, F.
Cavoto, G.
Galluccio, F.
Gilardoni, S.
Goddard, B.
Iacoangeli, F.
Kain, V.
Mirarchi, D.
Montesano, S.
Murtas, F.
Petrucci, S.
Redaelli, S.
Rossi, R.
Scandale, W.
Stoel, L.
Velotti, F.M.
author_sort Fraser, M.A.
collection CERN
description The possibility of extracting highly energetic particles from the Super Proton Synchrotron (SPS) by means of silicon bent crystals has been explored since the 1990's. The channelling effect of a bent crystal can be used to strongly deflect primary protons and eject them from the synchrotron. Many studies and experiments have been carried out to investigate crystal channelling effects. The extraction of 120 and 270 GeV proton beams has already been demonstrated in the SPS with dedicated experiments located in the ring. Presently in the SPS, the UA9 experiment is performing studies to evaluate the possibility to use bent silicon crystals to steer particle beams in high energy accelerators. Recent studies on the feasibility of extraction from the SPS have been made using the UA9 infrastructure with a longer-term view of using crystals to help mitigate slow extraction induced activation of the SPS. In this paper, the possibility to eject particles into the extraction channel in LSS2 using the bent crystals already installed in the SPS is presented. Details of the concept, simulations and measurements carried out with beam are presented, before the outlook for the future is discussed.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
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spelling cern-22807032021-07-15T03:50:33Zdoi:10.18429/JACoW-IPAC2017-MOPIK048http://cds.cern.ch/record/2280703engFraser, M.A.Addesa, F.Cavoto, G.Galluccio, F.Gilardoni, S.Goddard, B.Iacoangeli, F.Kain, V.Mirarchi, D.Montesano, S.Murtas, F.Petrucci, S.Redaelli, S.Rossi, R.Scandale, W.Stoel, L.Velotti, F.M.Experimental results of crystal-assisted slow extraction at the SPSphysics.acc-phAccelerators and Storage RingsThe possibility of extracting highly energetic particles from the Super Proton Synchrotron (SPS) by means of silicon bent crystals has been explored since the 1990's. The channelling effect of a bent crystal can be used to strongly deflect primary protons and eject them from the synchrotron. Many studies and experiments have been carried out to investigate crystal channelling effects. The extraction of 120 and 270 GeV proton beams has already been demonstrated in the SPS with dedicated experiments located in the ring. Presently in the SPS, the UA9 experiment is performing studies to evaluate the possibility to use bent silicon crystals to steer particle beams in high energy accelerators. Recent studies on the feasibility of extraction from the SPS have been made using the UA9 infrastructure with a longer-term view of using crystals to help mitigate slow extraction induced activation of the SPS. In this paper, the possibility to eject particles into the extraction channel in LSS2 using the bent crystals already installed in the SPS is presented. Details of the concept, simulations and measurements carried out with beam are presented, before the outlook for the future is discussed.arXiv:1707.05151CERN-ACC-2017-05-001oai:cds.cern.ch:22807032017-07-17
spellingShingle physics.acc-ph
Accelerators and Storage Rings
Fraser, M.A.
Addesa, F.
Cavoto, G.
Galluccio, F.
Gilardoni, S.
Goddard, B.
Iacoangeli, F.
Kain, V.
Mirarchi, D.
Montesano, S.
Murtas, F.
Petrucci, S.
Redaelli, S.
Rossi, R.
Scandale, W.
Stoel, L.
Velotti, F.M.
Experimental results of crystal-assisted slow extraction at the SPS
title Experimental results of crystal-assisted slow extraction at the SPS
title_full Experimental results of crystal-assisted slow extraction at the SPS
title_fullStr Experimental results of crystal-assisted slow extraction at the SPS
title_full_unstemmed Experimental results of crystal-assisted slow extraction at the SPS
title_short Experimental results of crystal-assisted slow extraction at the SPS
title_sort experimental results of crystal-assisted slow extraction at the sps
topic physics.acc-ph
Accelerators and Storage Rings
url https://dx.doi.org/10.18429/JACoW-IPAC2017-MOPIK048
http://cds.cern.ch/record/2280703
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