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Electron identification and $e - \pi$ separation with barral Module P15 (013)

We study the response of the electromagnetic barrel module P15 to the electrons and pions using the H8 beam test data in the beam momenta range from 20 to 180 GeV/c. Optimal filtering method is used to reconstruct the raw signals. We study electron identification and $e\/\pi$ separation using energy...

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Detalles Bibliográficos
Autores principales: Lü, L, Stroynowski, R, Gao, Y
Lenguaje:eng
Publicado: 2003
Materias:
Acceso en línea:http://cds.cern.ch/record/685534
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author Lü, L
Stroynowski, R
Gao, Y
author_facet Lü, L
Stroynowski, R
Gao, Y
author_sort Lü, L
collection CERN
description We study the response of the electromagnetic barrel module P15 to the electrons and pions using the H8 beam test data in the beam momenta range from 20 to 180 GeV/c. Optimal filtering method is used to reconstruct the raw signals. We study electron identification and $e\/\pi$ separation using energy profile of various layers only, energy profile and cell information from various layers; energy profile and cell information together with total energy deposit. Information from the Cherenkov counter in the beam line is used to select electron and pion sample at 20 and 40 GeV. Cut on total energy deposite is applied to obtain electron sample at higher energies. Result using both simple cuts and Neural Network methods are presented. We find cell information from various layers provide additional discriminating power to separate electrons and pions.
id cern-685534
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2003
record_format invenio
spelling cern-6855342019-09-30T06:29:59Zhttp://cds.cern.ch/record/685534engLü, LStroynowski, RGao, YElectron identification and $e - \pi$ separation with barral Module P15 (013)Detectors and Experimental TechniquesWe study the response of the electromagnetic barrel module P15 to the electrons and pions using the H8 beam test data in the beam momenta range from 20 to 180 GeV/c. Optimal filtering method is used to reconstruct the raw signals. We study electron identification and $e\/\pi$ separation using energy profile of various layers only, energy profile and cell information from various layers; energy profile and cell information together with total energy deposit. Information from the Cherenkov counter in the beam line is used to select electron and pion sample at 20 and 40 GeV. Cut on total energy deposite is applied to obtain electron sample at higher energies. Result using both simple cuts and Neural Network methods are presented. We find cell information from various layers provide additional discriminating power to separate electrons and pions.ATL-LARG-2003-013oai:cds.cern.ch:6855342003-07-20
spellingShingle Detectors and Experimental Techniques
Lü, L
Stroynowski, R
Gao, Y
Electron identification and $e - \pi$ separation with barral Module P15 (013)
title Electron identification and $e - \pi$ separation with barral Module P15 (013)
title_full Electron identification and $e - \pi$ separation with barral Module P15 (013)
title_fullStr Electron identification and $e - \pi$ separation with barral Module P15 (013)
title_full_unstemmed Electron identification and $e - \pi$ separation with barral Module P15 (013)
title_short Electron identification and $e - \pi$ separation with barral Module P15 (013)
title_sort electron identification and $e - \pi$ separation with barral module p15 (013)
topic Detectors and Experimental Techniques
url http://cds.cern.ch/record/685534
work_keys_str_mv AT lul electronidentificationandepiseparationwithbarralmodulep15013
AT stroynowskir electronidentificationandepiseparationwithbarralmodulep15013
AT gaoy electronidentificationandepiseparationwithbarralmodulep15013