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Study of inelastic nuclear interactions of 400 GeV/c protons in bent silicon crystals for beam steering purposes

Inelastic nuclear interaction probability of 400 GeV/c protons interacting with bent silicon crystals was investigated, in particular for both types of crystals installed at the CERN Large Hadron Collider for beam collimation purposes. In comparison to amorphous scattering interaction, in planar cha...

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Autores principales: Scandale, W., Andrisani, F., Arduini, G., Cerutti, F., Garattini, M., Gilardoni, S., Masi, A., Mirarchi, D., Montesano, S., Petrucci, S., Redaelli, S., Schoofs, P., Rossi, R., Breton, D., Chaumat, D., Dubos, S., Maalmi, J., Natochii, A., Puill, V., Stocchi, A., Bagli, E., Bandiera, L., Germogli, G., Guidi, V., Mazzolari, A., Murtas, F., Addesa, F., Cavoto, G., Iacoangeli, F., Galluccio, F., Afonin, A. G., Chesnokov, Yu. A., Durum, A. A., Maisheev, V. A., Sandomirskiy, Yu. E., Yanovich, A. A., Kovalenko, A. D., Taratin, A. M., Smirnov, G. I., Desinov, A. S., Gavrikov, Yu. A., Ivanov, Yu. M., Lapina, L. P., Malyarenko, L. G., Skorobogatov, V. V., Fulcher, J., James, T., Hall, G., Pesaresi, M., Raymond, M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Berlin Heidelberg 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6417461/
https://www.ncbi.nlm.nih.gov/pubmed/30956555
http://dx.doi.org/10.1140/epjc/s10052-018-5985-8
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author Scandale, W.
Andrisani, F.
Arduini, G.
Cerutti, F.
Garattini, M.
Gilardoni, S.
Masi, A.
Mirarchi, D.
Montesano, S.
Petrucci, S.
Redaelli, S.
Schoofs, P.
Rossi, R.
Breton, D.
Chaumat, D.
Dubos, S.
Maalmi, J.
Natochii, A.
Puill, V.
Stocchi, A.
Bagli, E.
Bandiera, L.
Germogli, G.
Guidi, V.
Mazzolari, A.
Murtas, F.
Addesa, F.
Cavoto, G.
Iacoangeli, F.
Galluccio, F.
Afonin, A. G.
Chesnokov, Yu. A.
Durum, A. A.
Maisheev, V. A.
Sandomirskiy, Yu. E.
Yanovich, A. A.
Kovalenko, A. D.
Taratin, A. M.
Smirnov, G. I.
Desinov, A. S.
Gavrikov, Yu. A.
Ivanov, Yu. M.
Lapina, L. P.
Malyarenko, L. G.
Skorobogatov, V. V.
Fulcher, J.
James, T.
Hall, G.
Pesaresi, M.
Raymond, M.
author_facet Scandale, W.
Andrisani, F.
Arduini, G.
Cerutti, F.
Garattini, M.
Gilardoni, S.
Masi, A.
Mirarchi, D.
Montesano, S.
Petrucci, S.
Redaelli, S.
Schoofs, P.
Rossi, R.
Breton, D.
Chaumat, D.
Dubos, S.
Maalmi, J.
Natochii, A.
Puill, V.
Stocchi, A.
Bagli, E.
Bandiera, L.
Germogli, G.
Guidi, V.
Mazzolari, A.
Murtas, F.
Addesa, F.
Cavoto, G.
Iacoangeli, F.
Galluccio, F.
Afonin, A. G.
Chesnokov, Yu. A.
Durum, A. A.
Maisheev, V. A.
Sandomirskiy, Yu. E.
Yanovich, A. A.
Kovalenko, A. D.
Taratin, A. M.
Smirnov, G. I.
Desinov, A. S.
Gavrikov, Yu. A.
Ivanov, Yu. M.
Lapina, L. P.
Malyarenko, L. G.
Skorobogatov, V. V.
Fulcher, J.
James, T.
Hall, G.
Pesaresi, M.
Raymond, M.
author_sort Scandale, W.
collection PubMed
description Inelastic nuclear interaction probability of 400 GeV/c protons interacting with bent silicon crystals was investigated, in particular for both types of crystals installed at the CERN Large Hadron Collider for beam collimation purposes. In comparison to amorphous scattering interaction, in planar channeling this probability is [Formula: see text] for the quasi-mosaic type (planes (111)), and [Formula: see text] for the strip type (planes (110)). Moreover, the absolute inelastic nuclear interaction probability in the axial channeling orientation, along the [Formula: see text] axis, was estimated for the first time, finding a value of [Formula: see text] for a crystal 2 mm long along the beam direction, with a bending angle of 55 [Formula: see text] rad. This value is more than two times lower with respect to the planar channeling orientation of the same crystal, and increases with the vertical angular misalignment. Finally, the correlation between the inelastic nuclear interaction probability in the planar channeling and the silicon crystal curvature is reported.
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spelling pubmed-64174612019-04-03 Study of inelastic nuclear interactions of 400 GeV/c protons in bent silicon crystals for beam steering purposes Scandale, W. Andrisani, F. Arduini, G. Cerutti, F. Garattini, M. Gilardoni, S. Masi, A. Mirarchi, D. Montesano, S. Petrucci, S. Redaelli, S. Schoofs, P. Rossi, R. Breton, D. Chaumat, D. Dubos, S. Maalmi, J. Natochii, A. Puill, V. Stocchi, A. Bagli, E. Bandiera, L. Germogli, G. Guidi, V. Mazzolari, A. Murtas, F. Addesa, F. Cavoto, G. Iacoangeli, F. Galluccio, F. Afonin, A. G. Chesnokov, Yu. A. Durum, A. A. Maisheev, V. A. Sandomirskiy, Yu. E. Yanovich, A. A. Kovalenko, A. D. Taratin, A. M. Smirnov, G. I. Desinov, A. S. Gavrikov, Yu. A. Ivanov, Yu. M. Lapina, L. P. Malyarenko, L. G. Skorobogatov, V. V. Fulcher, J. James, T. Hall, G. Pesaresi, M. Raymond, M. Eur Phys J C Part Fields Regular Article - Experimental Physics Inelastic nuclear interaction probability of 400 GeV/c protons interacting with bent silicon crystals was investigated, in particular for both types of crystals installed at the CERN Large Hadron Collider for beam collimation purposes. In comparison to amorphous scattering interaction, in planar channeling this probability is [Formula: see text] for the quasi-mosaic type (planes (111)), and [Formula: see text] for the strip type (planes (110)). Moreover, the absolute inelastic nuclear interaction probability in the axial channeling orientation, along the [Formula: see text] axis, was estimated for the first time, finding a value of [Formula: see text] for a crystal 2 mm long along the beam direction, with a bending angle of 55 [Formula: see text] rad. This value is more than two times lower with respect to the planar channeling orientation of the same crystal, and increases with the vertical angular misalignment. Finally, the correlation between the inelastic nuclear interaction probability in the planar channeling and the silicon crystal curvature is reported. Springer Berlin Heidelberg 2018-06-18 2018 /pmc/articles/PMC6417461/ /pubmed/30956555 http://dx.doi.org/10.1140/epjc/s10052-018-5985-8 Text en © The Author(s) 2018 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. Funded by SCOAP3
spellingShingle Regular Article - Experimental Physics
Scandale, W.
Andrisani, F.
Arduini, G.
Cerutti, F.
Garattini, M.
Gilardoni, S.
Masi, A.
Mirarchi, D.
Montesano, S.
Petrucci, S.
Redaelli, S.
Schoofs, P.
Rossi, R.
Breton, D.
Chaumat, D.
Dubos, S.
Maalmi, J.
Natochii, A.
Puill, V.
Stocchi, A.
Bagli, E.
Bandiera, L.
Germogli, G.
Guidi, V.
Mazzolari, A.
Murtas, F.
Addesa, F.
Cavoto, G.
Iacoangeli, F.
Galluccio, F.
Afonin, A. G.
Chesnokov, Yu. A.
Durum, A. A.
Maisheev, V. A.
Sandomirskiy, Yu. E.
Yanovich, A. A.
Kovalenko, A. D.
Taratin, A. M.
Smirnov, G. I.
Desinov, A. S.
Gavrikov, Yu. A.
Ivanov, Yu. M.
Lapina, L. P.
Malyarenko, L. G.
Skorobogatov, V. V.
Fulcher, J.
James, T.
Hall, G.
Pesaresi, M.
Raymond, M.
Study of inelastic nuclear interactions of 400 GeV/c protons in bent silicon crystals for beam steering purposes
title Study of inelastic nuclear interactions of 400 GeV/c protons in bent silicon crystals for beam steering purposes
title_full Study of inelastic nuclear interactions of 400 GeV/c protons in bent silicon crystals for beam steering purposes
title_fullStr Study of inelastic nuclear interactions of 400 GeV/c protons in bent silicon crystals for beam steering purposes
title_full_unstemmed Study of inelastic nuclear interactions of 400 GeV/c protons in bent silicon crystals for beam steering purposes
title_short Study of inelastic nuclear interactions of 400 GeV/c protons in bent silicon crystals for beam steering purposes
title_sort study of inelastic nuclear interactions of 400 gev/c protons in bent silicon crystals for beam steering purposes
topic Regular Article - Experimental Physics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6417461/
https://www.ncbi.nlm.nih.gov/pubmed/30956555
http://dx.doi.org/10.1140/epjc/s10052-018-5985-8
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