Comparative results on collimation of the SPS beam of protons and Pb ions with bent crystals
New experiments on crystal assisted collimation have been carried out at the CERN SPS with stored beams of 120 GeV/c protons and Pb ions. Bent silicon crystals of 2 mm long with about 170 μrad bend angle and a small residual torsion were used as primary collimators. In channeling conditions, the bea...
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creator | Scandale, W. Arduini, G. Assmann, R. Bracco, C. Cerutti, F. Christiansen, J. Gilardoni, S. Laface, E. Losito, R. Masi, A. Metral, E. Mirarchi, D. Montesano, S. Previtali, V. Redaelli, S. Valentino, G. Schoofs, P. Smirnov, G. Tlustos, L. Bagli, E. Baricordi, S. Dalpiaz, P. Guidi, V. Mazzolari, A. Vincenzi, D. Dabagov, S. Murtas, F. Carnera, A. Mea, G. Della De Salvador, D. Lombardi, A. Lytovchenko, O. Tonezzer, M. Cavoto, G. Ludovici, L. Santacesaria, R. Valente, P. Galluccio, F. Afonin, A.G. Bulgakov, M.K. Chesnokov, Yu.A. Maisheev, V.A. Yazynin, I.A. Kovalenko, A.D. Taratin, A.M. Uzhinskiy, V.V. Gavrikov, Yu.A. Ivanov, Yu.M. Lapina, L.P. Skorobogatov, V.V. Ferguson, W. Fulcher, J. Hall, G. Pesaresi, M. Raymond, M. Rose, A. Ryan, M. Zorba, O. Robert-Demolaize, G. Markiewicz, T. Oriunno, M. Wienands, U. |
description | New experiments on crystal assisted collimation have been carried out at the CERN SPS with stored beams of 120 GeV/c protons and Pb ions. Bent silicon crystals of 2 mm long with about 170 μrad bend angle and a small residual torsion were used as primary collimators. In channeling conditions, the beam loss rate induced by inelastic interactions of particles with the crystal nuclei is minimal. The loss reduction was about 6 for protons and about 3 for Pb ions. Lower reduction value for Pb ions can be explained by their considerably larger ionization losses in the crystal. In one of the crystals, the measured fraction of the Pb ion beam halo deflected in channeling conditions was 74%, a value very close to that for protons. The intensity of the off-momentum halo leaking out from the collimation station was measured in the first high dispersion area downstream. The particle population in the shadow of the secondary collimator–absorber was considerably smaller in channeling conditions than for amorphous orientations of the crystal. The corresponding reduction was in the range of 2–5 for both protons and Pb ions. |
doi_str_mv | 10.1016/j.physletb.2011.08.023 |
format | Article |
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Della ; De Salvador, D. ; Lombardi, A. ; Lytovchenko, O. ; Tonezzer, M. ; Cavoto, G. ; Ludovici, L. ; Santacesaria, R. ; Valente, P. ; Galluccio, F. ; Afonin, A.G. ; Bulgakov, M.K. ; Chesnokov, Yu.A. ; Maisheev, V.A. ; Yazynin, I.A. ; Kovalenko, A.D. ; Taratin, A.M. ; Uzhinskiy, V.V. ; Gavrikov, Yu.A. ; Ivanov, Yu.M. ; Lapina, L.P. ; Skorobogatov, V.V. ; Ferguson, W. ; Fulcher, J. ; Hall, G. ; Pesaresi, M. ; Raymond, M. ; Rose, A. ; Ryan, M. ; Zorba, O. ; Robert-Demolaize, G. ; Markiewicz, T. ; Oriunno, M. ; Wienands, U.</creator><creatorcontrib>Scandale, W. ; Arduini, G. ; Assmann, R. ; Bracco, C. ; Cerutti, F. ; Christiansen, J. ; Gilardoni, S. ; Laface, E. ; Losito, R. ; Masi, A. ; Metral, E. ; Mirarchi, D. ; Montesano, S. ; Previtali, V. ; Redaelli, S. ; Valentino, G. ; Schoofs, P. ; Smirnov, G. ; Tlustos, L. ; Bagli, E. ; Baricordi, S. ; Dalpiaz, P. ; Guidi, V. ; Mazzolari, A. ; Vincenzi, D. ; Dabagov, S. ; Murtas, F. ; Carnera, A. ; Mea, G. Della ; De Salvador, D. ; Lombardi, A. ; Lytovchenko, O. ; Tonezzer, M. ; Cavoto, G. ; Ludovici, L. ; Santacesaria, R. ; Valente, P. ; Galluccio, F. ; Afonin, A.G. ; Bulgakov, M.K. ; Chesnokov, Yu.A. ; Maisheev, V.A. ; Yazynin, I.A. ; Kovalenko, A.D. ; Taratin, A.M. ; Uzhinskiy, V.V. ; Gavrikov, Yu.A. ; Ivanov, Yu.M. ; Lapina, L.P. ; Skorobogatov, V.V. ; Ferguson, W. ; Fulcher, J. ; Hall, G. ; Pesaresi, M. ; Raymond, M. ; Rose, A. ; Ryan, M. ; Zorba, O. ; Robert-Demolaize, G. ; Markiewicz, T. ; Oriunno, M. ; Wienands, U. ; BROOKHAVEN NATIONAL LABORATORY (BNL)</creatorcontrib><description>New experiments on crystal assisted collimation have been carried out at the CERN SPS with stored beams of 120 GeV/c protons and Pb ions. Bent silicon crystals of 2 mm long with about 170 μrad bend angle and a small residual torsion were used as primary collimators. In channeling conditions, the beam loss rate induced by inelastic interactions of particles with the crystal nuclei is minimal. The loss reduction was about 6 for protons and about 3 for Pb ions. Lower reduction value for Pb ions can be explained by their considerably larger ionization losses in the crystal. In one of the crystals, the measured fraction of the Pb ion beam halo deflected in channeling conditions was 74%, a value very close to that for protons. The intensity of the off-momentum halo leaking out from the collimation station was measured in the first high dispersion area downstream. The particle population in the shadow of the secondary collimator–absorber was considerably smaller in channeling conditions than for amorphous orientations of the crystal. The corresponding reduction was in the range of 2–5 for both protons and Pb ions.</description><identifier>ISSN: 0370-2693</identifier><identifier>EISSN: 1873-2445</identifier><identifier>DOI: 10.1016/j.physletb.2011.08.023</identifier><language>eng</language><publisher>United States: Elsevier B.V</publisher><subject>43 ; Accelerator ; Beam collimation ; Beams (radiation) ; Channeling ; Collimation ; Crystal ; Crystals ; Halos ; Lead (metal) ; Reduction ; Spark plasma sintering</subject><ispartof>Physics letters. 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The particle population in the shadow of the secondary collimator–absorber was considerably smaller in channeling conditions than for amorphous orientations of the crystal. The corresponding reduction was in the range of 2–5 for both protons and Pb ions.</description><subject>43</subject><subject>Accelerator</subject><subject>Beam collimation</subject><subject>Beams (radiation)</subject><subject>Channeling</subject><subject>Collimation</subject><subject>Crystal</subject><subject>Crystals</subject><subject>Halos</subject><subject>Lead (metal)</subject><subject>Reduction</subject><subject>Spark plasma sintering</subject><issn>0370-2693</issn><issn>1873-2445</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2011</creationdate><recordtype>article</recordtype><recordid>eNqFkEuLFDEUhYMo2I7-BQmu3FRNbp6dndL4ggEHRndCSKVu0WmqK22SHul_b4rW9azug-8ezj2EvAXWAwN9e-hP-0uZsQ49ZwA92_aMi2dkA1sjOi6lek42TBjWcW3FS_KqlANjDBTTG_Jrl44nn32Nj0gzlvNcC00LDWme47GtW58mWvdIH-4f6ID-uM6nnGpaCvXLSO8HGtf-T6z7BiyVhnwp1c_lNXkxtYJv_tUb8vPzpx-7r93d9y_fdh_vuiCVrh0HBGWNMSDRSDFOMABMGgIIac0wCBwm4bXio7fSD5Ira5UVQsM4em2MuCHvrrqp1OhKiBXDPqRlwVAdMMmU4g16f4Wa999nLNUdYwk4z37BdC4OtAFuQUvbUH1FQ06lZJzcKbcw8qWJuTVzd3D_M3dr5o5tXcu8HX64HmL79jFiXs3gEnCMefUypviUxF9xjI1S</recordid><startdate>20110926</startdate><enddate>20110926</enddate><creator>Scandale, W.</creator><creator>Arduini, G.</creator><creator>Assmann, R.</creator><creator>Bracco, C.</creator><creator>Cerutti, F.</creator><creator>Christiansen, J.</creator><creator>Gilardoni, S.</creator><creator>Laface, E.</creator><creator>Losito, R.</creator><creator>Masi, A.</creator><creator>Metral, E.</creator><creator>Mirarchi, D.</creator><creator>Montesano, S.</creator><creator>Previtali, V.</creator><creator>Redaelli, S.</creator><creator>Valentino, G.</creator><creator>Schoofs, P.</creator><creator>Smirnov, G.</creator><creator>Tlustos, L.</creator><creator>Bagli, E.</creator><creator>Baricordi, S.</creator><creator>Dalpiaz, P.</creator><creator>Guidi, V.</creator><creator>Mazzolari, A.</creator><creator>Vincenzi, D.</creator><creator>Dabagov, S.</creator><creator>Murtas, F.</creator><creator>Carnera, A.</creator><creator>Mea, G. 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Della</creatorcontrib><creatorcontrib>De Salvador, D.</creatorcontrib><creatorcontrib>Lombardi, A.</creatorcontrib><creatorcontrib>Lytovchenko, O.</creatorcontrib><creatorcontrib>Tonezzer, M.</creatorcontrib><creatorcontrib>Cavoto, G.</creatorcontrib><creatorcontrib>Ludovici, L.</creatorcontrib><creatorcontrib>Santacesaria, R.</creatorcontrib><creatorcontrib>Valente, P.</creatorcontrib><creatorcontrib>Galluccio, F.</creatorcontrib><creatorcontrib>Afonin, A.G.</creatorcontrib><creatorcontrib>Bulgakov, M.K.</creatorcontrib><creatorcontrib>Chesnokov, Yu.A.</creatorcontrib><creatorcontrib>Maisheev, V.A.</creatorcontrib><creatorcontrib>Yazynin, I.A.</creatorcontrib><creatorcontrib>Kovalenko, A.D.</creatorcontrib><creatorcontrib>Taratin, A.M.</creatorcontrib><creatorcontrib>Uzhinskiy, V.V.</creatorcontrib><creatorcontrib>Gavrikov, Yu.A.</creatorcontrib><creatorcontrib>Ivanov, Yu.M.</creatorcontrib><creatorcontrib>Lapina, L.P.</creatorcontrib><creatorcontrib>Skorobogatov, V.V.</creatorcontrib><creatorcontrib>Ferguson, W.</creatorcontrib><creatorcontrib>Fulcher, J.</creatorcontrib><creatorcontrib>Hall, G.</creatorcontrib><creatorcontrib>Pesaresi, M.</creatorcontrib><creatorcontrib>Raymond, M.</creatorcontrib><creatorcontrib>Rose, A.</creatorcontrib><creatorcontrib>Ryan, M.</creatorcontrib><creatorcontrib>Zorba, O.</creatorcontrib><creatorcontrib>Robert-Demolaize, G.</creatorcontrib><creatorcontrib>Markiewicz, T.</creatorcontrib><creatorcontrib>Oriunno, M.</creatorcontrib><creatorcontrib>Wienands, U.</creatorcontrib><creatorcontrib>BROOKHAVEN NATIONAL LABORATORY (BNL)</creatorcontrib><collection>CrossRef</collection><collection>Solid State and Superconductivity Abstracts</collection><collection>Technology Research Database</collection><collection>Aerospace Database</collection><collection>Advanced Technologies Database with Aerospace</collection><collection>OSTI.GOV</collection><jtitle>Physics letters. B</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Scandale, W.</au><au>Arduini, G.</au><au>Assmann, R.</au><au>Bracco, C.</au><au>Cerutti, F.</au><au>Christiansen, J.</au><au>Gilardoni, S.</au><au>Laface, E.</au><au>Losito, R.</au><au>Masi, A.</au><au>Metral, E.</au><au>Mirarchi, D.</au><au>Montesano, S.</au><au>Previtali, V.</au><au>Redaelli, S.</au><au>Valentino, G.</au><au>Schoofs, P.</au><au>Smirnov, G.</au><au>Tlustos, L.</au><au>Bagli, E.</au><au>Baricordi, S.</au><au>Dalpiaz, P.</au><au>Guidi, V.</au><au>Mazzolari, A.</au><au>Vincenzi, D.</au><au>Dabagov, S.</au><au>Murtas, F.</au><au>Carnera, A.</au><au>Mea, G. Della</au><au>De Salvador, D.</au><au>Lombardi, A.</au><au>Lytovchenko, O.</au><au>Tonezzer, M.</au><au>Cavoto, G.</au><au>Ludovici, L.</au><au>Santacesaria, R.</au><au>Valente, P.</au><au>Galluccio, F.</au><au>Afonin, A.G.</au><au>Bulgakov, M.K.</au><au>Chesnokov, Yu.A.</au><au>Maisheev, V.A.</au><au>Yazynin, I.A.</au><au>Kovalenko, A.D.</au><au>Taratin, A.M.</au><au>Uzhinskiy, V.V.</au><au>Gavrikov, Yu.A.</au><au>Ivanov, Yu.M.</au><au>Lapina, L.P.</au><au>Skorobogatov, V.V.</au><au>Ferguson, W.</au><au>Fulcher, J.</au><au>Hall, G.</au><au>Pesaresi, M.</au><au>Raymond, M.</au><au>Rose, A.</au><au>Ryan, M.</au><au>Zorba, O.</au><au>Robert-Demolaize, G.</au><au>Markiewicz, T.</au><au>Oriunno, M.</au><au>Wienands, U.</au><aucorp>BROOKHAVEN NATIONAL LABORATORY (BNL)</aucorp><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Comparative results on collimation of the SPS beam of protons and Pb ions with bent crystals</atitle><jtitle>Physics letters. B</jtitle><date>2011-09-26</date><risdate>2011</risdate><volume>703</volume><issue>5</issue><spage>547</spage><epage>551</epage><pages>547-551</pages><issn>0370-2693</issn><eissn>1873-2445</eissn><abstract>New experiments on crystal assisted collimation have been carried out at the CERN SPS with stored beams of 120 GeV/c protons and Pb ions. Bent silicon crystals of 2 mm long with about 170 μrad bend angle and a small residual torsion were used as primary collimators. In channeling conditions, the beam loss rate induced by inelastic interactions of particles with the crystal nuclei is minimal. The loss reduction was about 6 for protons and about 3 for Pb ions. Lower reduction value for Pb ions can be explained by their considerably larger ionization losses in the crystal. In one of the crystals, the measured fraction of the Pb ion beam halo deflected in channeling conditions was 74%, a value very close to that for protons. The intensity of the off-momentum halo leaking out from the collimation station was measured in the first high dispersion area downstream. The particle population in the shadow of the secondary collimator–absorber was considerably smaller in channeling conditions than for amorphous orientations of the crystal. The corresponding reduction was in the range of 2–5 for both protons and Pb ions.</abstract><cop>United States</cop><pub>Elsevier B.V</pub><doi>10.1016/j.physletb.2011.08.023</doi><tpages>5</tpages><oa>free_for_read</oa></addata></record> |
fulltext | fulltext |
identifier | ISSN: 0370-2693 |
ispartof | Physics letters. B, 2011-09, Vol.703 (5), p.547-551 |
issn | 0370-2693 1873-2445 |
language | eng |
recordid | cdi_osti_scitechconnect_1040552 |
source | Elsevier ScienceDirect Journals |
subjects | 43 Accelerator Beam collimation Beams (radiation) Channeling Collimation Crystal Crystals Halos Lead (metal) Reduction Spark plasma sintering |
title | Comparative results on collimation of the SPS beam of protons and Pb ions with bent crystals |
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