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Highly efficient crystal deflector for channeling extraction of a proton beam from accelerators

The design and performance of a novel crystal deflector for proton beams are reported. A silicon crystal was used to channel and extract 70 GeV protons from the U-70 accelerator in Protvino with an efficiency of 85%, as measured for a beam of ~1e12 protons directed towards crystals of ~2 mm length i...

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Autores principales: Guidi, V., Malagu, C., Martinelli, G., Stefancich, M., Vincenzi, D., Biryukov, V.M., Chesnokov, Yu.A., Kotov, V.I., Scandale, W.
Lenguaje:eng
Publicado: 2003
Materias:
Acceso en línea:http://cds.cern.ch/record/622139
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author Guidi, V.
Malagu, C.
Martinelli, G.
Stefancich, M.
Vincenzi, D.
Biryukov, V.M.
Chesnokov, Yu.A.
Kotov, V.I.
Scandale, W.
author_facet Guidi, V.
Malagu, C.
Martinelli, G.
Stefancich, M.
Vincenzi, D.
Biryukov, V.M.
Chesnokov, Yu.A.
Kotov, V.I.
Scandale, W.
author_sort Guidi, V.
collection CERN
description The design and performance of a novel crystal deflector for proton beams are reported. A silicon crystal was used to channel and extract 70 GeV protons from the U-70 accelerator in Protvino with an efficiency of 85%, as measured for a beam of ~1e12 protons directed towards crystals of ~2 mm length in spills of ~2 s duration. Experimental data agree with the theoretically predicted Monte Carlo results for channeling. The technique allows one to manufacture a very short deflector along the beam direction (2 mm). Consequently, multiple encounters of circulating particles with the crystal are possible with little probability of multiple scattering and nuclear interactions per encounter. Thus, drastic increase in efficiency for particle extraction out of the accelerator was attained. We show the characteristics of the crystal- deflector and the technology behind it. Such an achievement is important in devising a more efficient use of the U-70 accelerator and provides crucial support for implementing crystal-assisted slow extraction and collimation in other machines, such as the Tevatron, RHIC, the AGS, the SNS, COSY, and the LHC.
id cern-622139
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2003
record_format invenio
spelling cern-6221392023-03-15T19:11:02Zhttp://cds.cern.ch/record/622139engGuidi, V.Malagu, C.Martinelli, G.Stefancich, M.Vincenzi, D.Biryukov, V.M.Chesnokov, Yu.A.Kotov, V.I.Scandale, W.Highly efficient crystal deflector for channeling extraction of a proton beam from acceleratorsAccelerators and Storage RingsThe design and performance of a novel crystal deflector for proton beams are reported. A silicon crystal was used to channel and extract 70 GeV protons from the U-70 accelerator in Protvino with an efficiency of 85%, as measured for a beam of ~1e12 protons directed towards crystals of ~2 mm length in spills of ~2 s duration. Experimental data agree with the theoretically predicted Monte Carlo results for channeling. The technique allows one to manufacture a very short deflector along the beam direction (2 mm). Consequently, multiple encounters of circulating particles with the crystal are possible with little probability of multiple scattering and nuclear interactions per encounter. Thus, drastic increase in efficiency for particle extraction out of the accelerator was attained. We show the characteristics of the crystal- deflector and the technology behind it. Such an achievement is important in devising a more efficient use of the U-70 accelerator and provides crucial support for implementing crystal-assisted slow extraction and collimation in other machines, such as the Tevatron, RHIC, the AGS, the SNS, COSY, and the LHC.The design and performance of a novel crystal deflector for proton beams are reported. A silicon crystal was used to channel and extract 70 GeV protons from the U-70 accelerator in Protvino with an efficiency of 85%, as measured for a beam of ~1e12 protons directed towards crystals of ~2 mm length in spills of ~2 s duration. Experimental data agree with the theoretically predicted Monte Carlo results for channeling. The technique allows one to manufacture a very short deflector along the beam direction (2 mm). Consequently, multiple encounters of circulating particles with the crystal are possible with little probability of multiple scattering and nuclear interactions per encounter. Thus, drastic increase in efficiency for particle extraction out of the accelerator was attained. We show the characteristics of the crystal- deflector and the technology behind it. Such an achievement is important in devising a more efficient use of the U-70 accelerator and provides crucial support for implementing crystal-assisted slow extraction and collimation in other machines, such as the Tevatron, RHIC, the AGS, the SNS, COSY, and the LHC.physics/0306126PAC03-TPPB016oai:cds.cern.ch:6221392003-06-16
spellingShingle Accelerators and Storage Rings
Guidi, V.
Malagu, C.
Martinelli, G.
Stefancich, M.
Vincenzi, D.
Biryukov, V.M.
Chesnokov, Yu.A.
Kotov, V.I.
Scandale, W.
Highly efficient crystal deflector for channeling extraction of a proton beam from accelerators
title Highly efficient crystal deflector for channeling extraction of a proton beam from accelerators
title_full Highly efficient crystal deflector for channeling extraction of a proton beam from accelerators
title_fullStr Highly efficient crystal deflector for channeling extraction of a proton beam from accelerators
title_full_unstemmed Highly efficient crystal deflector for channeling extraction of a proton beam from accelerators
title_short Highly efficient crystal deflector for channeling extraction of a proton beam from accelerators
title_sort highly efficient crystal deflector for channeling extraction of a proton beam from accelerators
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/622139
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