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Hadron energy reconstruction for ATLAS barrel combined calorimeter using non-parametric method

Hadron energy reconstruction for the ATLAS barrel prototype combined calorimeter in the framework of the non-parametrical method is discussed. The non-parametrical method utilizes only the known e/h ratios and the electron calibration constants and does not require the determination of any parameter...

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Autor principal: Kulchitskii, Yu A
Lenguaje:eng
Publicado: 2000
Materias:
Acceso en línea:http://cds.cern.ch/record/538319
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author Kulchitskii, Yu A
author_facet Kulchitskii, Yu A
author_sort Kulchitskii, Yu A
collection CERN
description Hadron energy reconstruction for the ATLAS barrel prototype combined calorimeter in the framework of the non-parametrical method is discussed. The non-parametrical method utilizes only the known e/h ratios and the electron calibration constants and does not require the determination of any parameters by a minimization technique. Thus, this technique lends itself to fast energy reconstruction in a first level trigger. The reconstructed mean values of the hadron energies are within \pm1% of the true values and the fractional energy resolution is [(58\pm 3)%{\sqrt{GeV}}/\sqrt{E}+(2.5\pm0.3)%]\bigoplus(1.7\pm0.2) GeV/E. The value of the e/h ratio obtained for the electromagnetic compartment of the combined calorimeter is 1.74\pm0.04. Results of a study of the longitudinal hadronic shower development are also presented.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2000
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spelling cern-5383192019-09-30T06:29:59Zhttp://cds.cern.ch/record/538319engKulchitskii, Yu AHadron energy reconstruction for ATLAS barrel combined calorimeter using non-parametric methodDetectors and Experimental TechniquesHadron energy reconstruction for the ATLAS barrel prototype combined calorimeter in the framework of the non-parametrical method is discussed. The non-parametrical method utilizes only the known e/h ratios and the electron calibration constants and does not require the determination of any parameters by a minimization technique. Thus, this technique lends itself to fast energy reconstruction in a first level trigger. The reconstructed mean values of the hadron energies are within \pm1% of the true values and the fractional energy resolution is [(58\pm 3)%{\sqrt{GeV}}/\sqrt{E}+(2.5\pm0.3)%]\bigoplus(1.7\pm0.2) GeV/E. The value of the e/h ratio obtained for the electromagnetic compartment of the combined calorimeter is 1.74\pm0.04. Results of a study of the longitudinal hadronic shower development are also presented.E1-2000-260JINR-E1-2000-260oai:cds.cern.ch:5383192000
spellingShingle Detectors and Experimental Techniques
Kulchitskii, Yu A
Hadron energy reconstruction for ATLAS barrel combined calorimeter using non-parametric method
title Hadron energy reconstruction for ATLAS barrel combined calorimeter using non-parametric method
title_full Hadron energy reconstruction for ATLAS barrel combined calorimeter using non-parametric method
title_fullStr Hadron energy reconstruction for ATLAS barrel combined calorimeter using non-parametric method
title_full_unstemmed Hadron energy reconstruction for ATLAS barrel combined calorimeter using non-parametric method
title_short Hadron energy reconstruction for ATLAS barrel combined calorimeter using non-parametric method
title_sort hadron energy reconstruction for atlas barrel combined calorimeter using non-parametric method
topic Detectors and Experimental Techniques
url http://cds.cern.ch/record/538319
work_keys_str_mv AT kulchitskiiyua hadronenergyreconstructionforatlasbarrelcombinedcalorimeterusingnonparametricmethod