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New method of out-of-time energy subtraction for the CMS hadronic calorimeter

The CMS hadronic calorimeter employs plastic scintillator active material in the barrel and endcap (HBHE). In Run 2, the LHC operates at 13 TeV center of mass energy with up to 50 simultaneous collisions per bunch crossing (pileup) and a 25 ns bunch spacing. The HBHE scintillator light pulse is only...

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Autor principal: Lawhorn, Jay Mathew
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1742-6596/1162/1/012036
http://cds.cern.ch/record/2632867
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author Lawhorn, Jay Mathew
author_facet Lawhorn, Jay Mathew
author_sort Lawhorn, Jay Mathew
collection CERN
description The CMS hadronic calorimeter employs plastic scintillator active material in the barrel and endcap (HBHE). In Run 2, the LHC operates at 13 TeV center of mass energy with up to 50 simultaneous collisions per bunch crossing (pileup) and a 25 ns bunch spacing. The HBHE scintillator light pulse is only 60\% contained in a 25 ns window, resulting in significant pulse overlap for consecutive events (out-of-time pileup). This talk presents a novel algorithm that will be used in 2018 for subtracting out-of-time pileup in HBHE both online in the software trigger and offline. The algorithm includes methods for both the barrel with hybrid photodiode photosensors and QIE8 digitizers, and the endcap with silicon photomultipliers and QIE11 digitizers, including the challenging charge-dependent pulse shaping effects of the QIEs. The on-detector pulse shape measurement method and results are also shown. The new algorithm is 5-10 times faster than the previous one, and for the first time CMS will use the offline method at the trigger level.
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spelling cern-26328672022-01-14T15:04:02Zdoi:10.1088/1742-6596/1162/1/012036http://cds.cern.ch/record/2632867engLawhorn, Jay MathewNew method of out-of-time energy subtraction for the CMS hadronic calorimeterDetectors and Experimental TechniquesThe CMS hadronic calorimeter employs plastic scintillator active material in the barrel and endcap (HBHE). In Run 2, the LHC operates at 13 TeV center of mass energy with up to 50 simultaneous collisions per bunch crossing (pileup) and a 25 ns bunch spacing. The HBHE scintillator light pulse is only 60\% contained in a 25 ns window, resulting in significant pulse overlap for consecutive events (out-of-time pileup). This talk presents a novel algorithm that will be used in 2018 for subtracting out-of-time pileup in HBHE both online in the software trigger and offline. The algorithm includes methods for both the barrel with hybrid photodiode photosensors and QIE8 digitizers, and the endcap with silicon photomultipliers and QIE11 digitizers, including the challenging charge-dependent pulse shaping effects of the QIEs. The on-detector pulse shape measurement method and results are also shown. The new algorithm is 5-10 times faster than the previous one, and for the first time CMS will use the offline method at the trigger level.CMS-CR-2018-140oai:cds.cern.ch:26328672018-07-23
spellingShingle Detectors and Experimental Techniques
Lawhorn, Jay Mathew
New method of out-of-time energy subtraction for the CMS hadronic calorimeter
title New method of out-of-time energy subtraction for the CMS hadronic calorimeter
title_full New method of out-of-time energy subtraction for the CMS hadronic calorimeter
title_fullStr New method of out-of-time energy subtraction for the CMS hadronic calorimeter
title_full_unstemmed New method of out-of-time energy subtraction for the CMS hadronic calorimeter
title_short New method of out-of-time energy subtraction for the CMS hadronic calorimeter
title_sort new method of out-of-time energy subtraction for the cms hadronic calorimeter
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1088/1742-6596/1162/1/012036
http://cds.cern.ch/record/2632867
work_keys_str_mv AT lawhornjaymathew newmethodofoutoftimeenergysubtractionforthecmshadroniccalorimeter