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Experimental evidence of independence of nuclear de-channeling length on the particle charge sign

Under coherent interactions, particles undergo correlated collisions with the crystal lattice and their motion result in confinement in the fields of atomic planes, i.e. particle channeling. Other than coherently interacting with the lattice, particles also suffer incoherent interactions with indivi...

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Detalles Bibliográficos
Autores principales: Bagli, E., Guidi, V., Mazzolari, A., Bandiera, L., Germogli, G., Sytov, A.I., De Salvador, D., Berra, A., Prest, M., Vallazza, E.
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.1140/epjc/s10052-017-4642-y
http://cds.cern.ch/record/2195072
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author Bagli, E.
Guidi, V.
Mazzolari, A.
Bandiera, L.
Germogli, G.
Sytov, A.I.
De Salvador, D.
Berra, A.
Prest, M.
Vallazza, E.
author_facet Bagli, E.
Guidi, V.
Mazzolari, A.
Bandiera, L.
Germogli, G.
Sytov, A.I.
De Salvador, D.
Berra, A.
Prest, M.
Vallazza, E.
author_sort Bagli, E.
collection CERN
description Under coherent interactions, particles undergo correlated collisions with the crystal lattice and their motion result in confinement in the fields of atomic planes, i.e. particle channeling. Other than coherently interacting with the lattice, particles also suffer incoherent interactions with individual nuclei and may leave their bounded motion, i.e., they de-channel. The latter is the main limiting factor for applications of coherent interactions in crystal-assisted particle steering. We experimentally investigated the nature of de-channeling of 120 GeV/c $e^{-}$ and $e^{+}$ in a bent silicon crystal at H4-SPS external line at CERN. We found that while channeling efficiency differs significantly for $e^{-}$ ( $2\pm 2$ $\%$ ) and $e^{+}$ ( $54\pm 2$ $\%$ ), their nuclear de-channeling length is comparable, $(0.6\pm 0.1)$ mm for $e^{-}$ and $(0.7\pm 0.3)$ mm for $e^{+}$ . The experimental proof of the equality of the nuclear de-channeling length for positrons and electrons is interpreted in terms of similar dynamics undergone by the channeled particles in the field of nuclei irrespective of their charge.
id cern-2195072
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
record_format invenio
spelling cern-21950722021-05-20T03:14:52Zdoi:10.1140/epjc/s10052-017-4642-yhttp://cds.cern.ch/record/2195072engBagli, E.Guidi, V.Mazzolari, A.Bandiera, L.Germogli, G.Sytov, A.I.De Salvador, D.Berra, A.Prest, M.Vallazza, E.Experimental evidence of independence of nuclear de-channeling length on the particle charge signhep-exParticle Physics - ExperimentAccelerators and Storage Ringsphysics.acc-phUnder coherent interactions, particles undergo correlated collisions with the crystal lattice and their motion result in confinement in the fields of atomic planes, i.e. particle channeling. Other than coherently interacting with the lattice, particles also suffer incoherent interactions with individual nuclei and may leave their bounded motion, i.e., they de-channel. The latter is the main limiting factor for applications of coherent interactions in crystal-assisted particle steering. We experimentally investigated the nature of de-channeling of 120 GeV/c $e^{-}$ and $e^{+}$ in a bent silicon crystal at H4-SPS external line at CERN. We found that while channeling efficiency differs significantly for $e^{-}$ ( $2\pm 2$ $\%$ ) and $e^{+}$ ( $54\pm 2$ $\%$ ), their nuclear de-channeling length is comparable, $(0.6\pm 0.1)$ mm for $e^{-}$ and $(0.7\pm 0.3)$ mm for $e^{+}$ . The experimental proof of the equality of the nuclear de-channeling length for positrons and electrons is interpreted in terms of similar dynamics undergone by the channeled particles in the field of nuclei irrespective of their charge.Under coherent interactions, particles undergo correlated collisions with the crystal lattice and their motion result in confinement in the fields of atomic planes, i.e. particle channeling. Other than coherently interacting with the lattice, particles also suffer incoherent interactions with individual nuclei and may leave their bounded motion, i.e., they de-channel. This latter is the main limiting factor for applications of coherent interactions in crystal-assisted particle steering. We experimentally investigated the nature of dechanneling of 120 GeV/c $e^{-}$ and $e^{+}$ in a bent silicon crystal at H4-SPS external line at CERN. We found out that while channeling efficiency differs significantly for $e^{-}$ ($2\pm2$ $\%$) and $e^{+}$ ($54\pm2$ $\%$), their nuclear dechanneling length is comparable, $(0.6\pm0.1)$ mm for $e^{-}$ and $(0.7\pm0.3)$ mm for $e^{+}$. The experimental proof of the equality of the nuclear dechanneling length for positrons and electrons is interpreted in terms of similar dynamics undergone by the channeled particles in the field of nuclei no matter of their charge.arXiv:1606.08755oai:cds.cern.ch:21950722016-06-28
spellingShingle hep-ex
Particle Physics - Experiment
Accelerators and Storage Rings
physics.acc-ph
Bagli, E.
Guidi, V.
Mazzolari, A.
Bandiera, L.
Germogli, G.
Sytov, A.I.
De Salvador, D.
Berra, A.
Prest, M.
Vallazza, E.
Experimental evidence of independence of nuclear de-channeling length on the particle charge sign
title Experimental evidence of independence of nuclear de-channeling length on the particle charge sign
title_full Experimental evidence of independence of nuclear de-channeling length on the particle charge sign
title_fullStr Experimental evidence of independence of nuclear de-channeling length on the particle charge sign
title_full_unstemmed Experimental evidence of independence of nuclear de-channeling length on the particle charge sign
title_short Experimental evidence of independence of nuclear de-channeling length on the particle charge sign
title_sort experimental evidence of independence of nuclear de-channeling length on the particle charge sign
topic hep-ex
Particle Physics - Experiment
Accelerators and Storage Rings
physics.acc-ph
url https://dx.doi.org/10.1140/epjc/s10052-017-4642-y
http://cds.cern.ch/record/2195072
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