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The high energy beam and the RF-separator for BEBC at the CERN-300 GeV

A RF separated beam for BEBC using a target located in the epb tunnel at the maximum distance from BEBC is described. As it has been shown that BEBC is a useful detector for strong interaction physics up to the 100 GeV/c region of incident momenta, it is intended that the beam will separate masses t...

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Detalles Bibliográficos
Autores principales: Atherton, Henry W, Bernard, P, Grant, A, Lazeyras, Pierre
Lenguaje:eng
Publicado: 1973
Materias:
Acceso en línea:http://cds.cern.ch/record/880531
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author Atherton, Henry W
Bernard, P
Grant, A
Lazeyras, Pierre
author_facet Atherton, Henry W
Bernard, P
Grant, A
Lazeyras, Pierre
author_sort Atherton, Henry W
collection CERN
description A RF separated beam for BEBC using a target located in the epb tunnel at the maximum distance from BEBC is described. As it has been shown that BEBC is a useful detector for strong interaction physics up to the 100 GeV/c region of incident momenta, it is intended that the beam will separate masses the highest possible momenta (73 GeV/c K- pi ), that are a reasonably clear extension of present techniques. It is also intended to give the first part of the RF beam in the epb tunnel the capacity to transport the major part of the available proton flux to the West Area to provide a secondary target for a short neutrino beam or a lower energy separated beam installed on the floor of halls E1 and E3. The maximum unseparated momentum is 150 GeV/c. (3 refs).
id cern-880531
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1973
record_format invenio
spelling cern-8805312019-09-30T06:29:59Zhttp://cds.cern.ch/record/880531engAtherton, Henry WBernard, PGrant, ALazeyras, PierreThe high energy beam and the RF-separator for BEBC at the CERN-300 GeVNuclear PhysicsA RF separated beam for BEBC using a target located in the epb tunnel at the maximum distance from BEBC is described. As it has been shown that BEBC is a useful detector for strong interaction physics up to the 100 GeV/c region of incident momenta, it is intended that the beam will separate masses the highest possible momenta (73 GeV/c K- pi ), that are a reasonably clear extension of present techniques. It is also intended to give the first part of the RF beam in the epb tunnel the capacity to transport the major part of the available proton flux to the West Area to provide a secondary target for a short neutrino beam or a lower energy separated beam installed on the floor of halls E1 and E3. The maximum unseparated momentum is 150 GeV/c. (3 refs).oai:cds.cern.ch:8805311973
spellingShingle Nuclear Physics
Atherton, Henry W
Bernard, P
Grant, A
Lazeyras, Pierre
The high energy beam and the RF-separator for BEBC at the CERN-300 GeV
title The high energy beam and the RF-separator for BEBC at the CERN-300 GeV
title_full The high energy beam and the RF-separator for BEBC at the CERN-300 GeV
title_fullStr The high energy beam and the RF-separator for BEBC at the CERN-300 GeV
title_full_unstemmed The high energy beam and the RF-separator for BEBC at the CERN-300 GeV
title_short The high energy beam and the RF-separator for BEBC at the CERN-300 GeV
title_sort high energy beam and the rf-separator for bebc at the cern-300 gev
topic Nuclear Physics
url http://cds.cern.ch/record/880531
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