Cargando…
Summary of experimental studies at CERN on a positron source using crystal effects
New kind of positron sources for future linear colliders, where the converter is a tungsten crystal oriented on the <111> axis, has been studied at CERN in the WA103 experiment. In such sources the photons which create the $e^+ e^-$ pairs result from channeling radiation and coherent bremsstra...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , |
---|---|
Lenguaje: | eng |
Publicado: |
2005
|
Materias: | |
Acceso en línea: | https://dx.doi.org/10.1016/j.nimb.2005.04.134 http://cds.cern.ch/record/839538 |
_version_ | 1780906169107218432 |
---|---|
author | Artru, X Baier, V Beloborodov, K I Bogdanov, A Bukin, A Burdin, S Chehab, R Chevallier, M Cizeron, R Dauvergne, D Dimova, T Druzhinin, V P Dubrovin, M Gatignon, L Goluev, V Jejcic, A Keppker, P Kirsch, R Kulibaba, V Lautesse, P Major, J Poizat, J C Potylitsin, A P Rémillieux, Joseph Serednyakov, S I Shary, V Strakhovenko, V M Sylvia, C |
author_facet | Artru, X Baier, V Beloborodov, K I Bogdanov, A Bukin, A Burdin, S Chehab, R Chevallier, M Cizeron, R Dauvergne, D Dimova, T Druzhinin, V P Dubrovin, M Gatignon, L Goluev, V Jejcic, A Keppker, P Kirsch, R Kulibaba, V Lautesse, P Major, J Poizat, J C Potylitsin, A P Rémillieux, Joseph Serednyakov, S I Shary, V Strakhovenko, V M Sylvia, C |
author_sort | Artru, X |
collection | CERN |
description | New kind of positron sources for future linear colliders, where the converter is a tungsten crystal oriented on the <111> axis, has been studied at CERN in the WA103 experiment. In such sources the photons which create the $e^+ e^-$ pairs result from channeling radiation and coherent bremsstrahlung. In this experiment electron beams of 6 and 10 GeV were sent on different kinds of targets: a 4 mm thick crystal, a 8 mm thick crystal and a compound taraget (4 mm crystal + 4 mm amorphous disk). An amorphous tungsten target 20 mm thick was also used for comparison with the 8 mm crystal. Tracks of outgoing charged particles were detected and analyzed by a drift chamber in a magnetic field. The energy and angle spectra of the positrons were obtained for energies up to 150 MeV and angles up to 30 degrees. The measured positron distribution in momentum space (longitudinal versus transverse) is also presented, giving a full momentum space description of the source. Results on outgoing photons are also presented. A significant enhancement of both photon and positron production is clearly observed. At 10 GeV incident energy, the positron enhancement factor is 4 for the 4 mm crystal, about 2 for the 8 mm crystal. Besides, the simulation code for the crystal processes is validated by a quite good agreement between the simulated and experimental spectra, both for positrons and photons. |
id | cern-839538 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2005 |
record_format | invenio |
spelling | cern-8395382019-09-30T06:29:59Zdoi:10.1016/j.nimb.2005.04.134http://cds.cern.ch/record/839538engArtru, XBaier, VBeloborodov, K IBogdanov, ABukin, ABurdin, SChehab, RChevallier, MCizeron, RDauvergne, DDimova, TDruzhinin, V PDubrovin, MGatignon, LGoluev, VJejcic, AKeppker, PKirsch, RKulibaba, VLautesse, PMajor, JPoizat, J CPotylitsin, A PRémillieux, JosephSerednyakov, S IShary, VStrakhovenko, V MSylvia, CSummary of experimental studies at CERN on a positron source using crystal effectsOther Fields of PhysicsNew kind of positron sources for future linear colliders, where the converter is a tungsten crystal oriented on the <111> axis, has been studied at CERN in the WA103 experiment. In such sources the photons which create the $e^+ e^-$ pairs result from channeling radiation and coherent bremsstrahlung. In this experiment electron beams of 6 and 10 GeV were sent on different kinds of targets: a 4 mm thick crystal, a 8 mm thick crystal and a compound taraget (4 mm crystal + 4 mm amorphous disk). An amorphous tungsten target 20 mm thick was also used for comparison with the 8 mm crystal. Tracks of outgoing charged particles were detected and analyzed by a drift chamber in a magnetic field. The energy and angle spectra of the positrons were obtained for energies up to 150 MeV and angles up to 30 degrees. The measured positron distribution in momentum space (longitudinal versus transverse) is also presented, giving a full momentum space description of the source. Results on outgoing photons are also presented. A significant enhancement of both photon and positron production is clearly observed. At 10 GeV incident energy, the positron enhancement factor is 4 for the 4 mm crystal, about 2 for the 8 mm crystal. Besides, the simulation code for the crystal processes is validated by a quite good agreement between the simulated and experimental spectra, both for positrons and photons.physics/0506016oai:cds.cern.ch:8395382005-06-02 |
spellingShingle | Other Fields of Physics Artru, X Baier, V Beloborodov, K I Bogdanov, A Bukin, A Burdin, S Chehab, R Chevallier, M Cizeron, R Dauvergne, D Dimova, T Druzhinin, V P Dubrovin, M Gatignon, L Goluev, V Jejcic, A Keppker, P Kirsch, R Kulibaba, V Lautesse, P Major, J Poizat, J C Potylitsin, A P Rémillieux, Joseph Serednyakov, S I Shary, V Strakhovenko, V M Sylvia, C Summary of experimental studies at CERN on a positron source using crystal effects |
title | Summary of experimental studies at CERN on a positron source using crystal effects |
title_full | Summary of experimental studies at CERN on a positron source using crystal effects |
title_fullStr | Summary of experimental studies at CERN on a positron source using crystal effects |
title_full_unstemmed | Summary of experimental studies at CERN on a positron source using crystal effects |
title_short | Summary of experimental studies at CERN on a positron source using crystal effects |
title_sort | summary of experimental studies at cern on a positron source using crystal effects |
topic | Other Fields of Physics |
url | https://dx.doi.org/10.1016/j.nimb.2005.04.134 http://cds.cern.ch/record/839538 |
work_keys_str_mv | AT artrux summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT baierv summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT beloborodovki summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT bogdanova summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT bukina summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT burdins summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT chehabr summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT chevallierm summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT cizeronr summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT dauvergned summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT dimovat summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT druzhininvp summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT dubrovinm summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT gatignonl summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT goluevv summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT jejcica summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT keppkerp summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT kirschr summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT kulibabav summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT lautessep summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT majorj summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT poizatjc summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT potylitsinap summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT remillieuxjoseph summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT serednyakovsi summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT sharyv summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT strakhovenkovm summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects AT sylviac summaryofexperimentalstudiesatcernonapositronsourceusingcrystaleffects |