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Tests with beam setup of the TileCal Phase-II upgrade electronics

The LHC has planned a series of upgrades culminating in the High Luminosity LHC (HL-LHC) which will have an average luminosity 5-7 times larger than the nominal Run-2 value. The ATLAS Tile Calorimeter (TileCal) will undergo an upgrade to accommodate to the HL-LHC parameters. The TileCal electronics...

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Autor principal: Hlaluku, Dingane Reward
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:http://cds.cern.ch/record/2243316
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author Hlaluku, Dingane Reward
author_facet Hlaluku, Dingane Reward
author_sort Hlaluku, Dingane Reward
collection CERN
description The LHC has planned a series of upgrades culminating in the High Luminosity LHC (HL-LHC) which will have an average luminosity 5-7 times larger than the nominal Run-2 value. The ATLAS Tile Calorimeter (TileCal) will undergo an upgrade to accommodate to the HL-LHC parameters. The TileCal electronics both on- and off-detector will be completely redesigned and a new readout architecture will be adopted. The photomultiplier signals will be digitised and transferred to the TileCal PreProcessors (PPr) located off-detector for every bunch crossing. Then, the PPr will provide preprocessed digital data to the first level trigger with improved spatial granularity and energy resolution with respect to the current analog trigger signals. We plan to insert one TileCal module instrumented with the new electronics in the real detector to evaluate and qualify the new readout and trigger concepts in the overall ATLAS data acquisition system. This new drawer, so-called Hybrid Demonstrator, must provide analog trigger signal for backwards compatibility with the current system. The 3in1 front-end option has been mounted in this Demonstrator which provides all the upgrade functionalities but maintaining the analog trigger signals. This Demonstrator drawer has been inserted in a TileCal module prototype to evaluate the operability and performance in the lab. In parallel, one more TileCal module has been instrumented with other two front-end electronics options based on custom ASICs (QIE and FATALIC) which are under evaluation. This two modules equipped with Phase-II upgrade electronics together with three modules equipped with the legacy system were exposed to different particles and energies in three test-beam campaigns during 2015 and 2016. This contribution will describe in detail the different components of the new readout electronics for the three options under evaluation. We will present the firmware and software developed explicitly for the tests with beam and we will show performance results for different types of particles as well as for calibration data.
id cern-2243316
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
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spelling cern-22433162019-09-30T06:29:59Zhttp://cds.cern.ch/record/2243316engHlaluku, Dingane RewardTests with beam setup of the TileCal Phase-II upgrade electronicsParticle Physics - ExperimentThe LHC has planned a series of upgrades culminating in the High Luminosity LHC (HL-LHC) which will have an average luminosity 5-7 times larger than the nominal Run-2 value. The ATLAS Tile Calorimeter (TileCal) will undergo an upgrade to accommodate to the HL-LHC parameters. The TileCal electronics both on- and off-detector will be completely redesigned and a new readout architecture will be adopted. The photomultiplier signals will be digitised and transferred to the TileCal PreProcessors (PPr) located off-detector for every bunch crossing. Then, the PPr will provide preprocessed digital data to the first level trigger with improved spatial granularity and energy resolution with respect to the current analog trigger signals. We plan to insert one TileCal module instrumented with the new electronics in the real detector to evaluate and qualify the new readout and trigger concepts in the overall ATLAS data acquisition system. This new drawer, so-called Hybrid Demonstrator, must provide analog trigger signal for backwards compatibility with the current system. The 3in1 front-end option has been mounted in this Demonstrator which provides all the upgrade functionalities but maintaining the analog trigger signals. This Demonstrator drawer has been inserted in a TileCal module prototype to evaluate the operability and performance in the lab. In parallel, one more TileCal module has been instrumented with other two front-end electronics options based on custom ASICs (QIE and FATALIC) which are under evaluation. This two modules equipped with Phase-II upgrade electronics together with three modules equipped with the legacy system were exposed to different particles and energies in three test-beam campaigns during 2015 and 2016. This contribution will describe in detail the different components of the new readout electronics for the three options under evaluation. We will present the firmware and software developed explicitly for the tests with beam and we will show performance results for different types of particles as well as for calibration data.ATL-TILECAL-SLIDE-2017-010oai:cds.cern.ch:22433162017-01-30
spellingShingle Particle Physics - Experiment
Hlaluku, Dingane Reward
Tests with beam setup of the TileCal Phase-II upgrade electronics
title Tests with beam setup of the TileCal Phase-II upgrade electronics
title_full Tests with beam setup of the TileCal Phase-II upgrade electronics
title_fullStr Tests with beam setup of the TileCal Phase-II upgrade electronics
title_full_unstemmed Tests with beam setup of the TileCal Phase-II upgrade electronics
title_short Tests with beam setup of the TileCal Phase-II upgrade electronics
title_sort tests with beam setup of the tilecal phase-ii upgrade electronics
topic Particle Physics - Experiment
url http://cds.cern.ch/record/2243316
work_keys_str_mv AT hlalukudinganereward testswithbeamsetupofthetilecalphaseiiupgradeelectronics