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A Highly Selective First-Level Muon Trigger With MDT Chamber Data for ATLAS at HL-LHC

Highly selective triggers are essential for the physics programme of the ATLAS experiment at HL-LHC where the instantaneous luminosity will be about an order of magnitude larger than the LHC instantaneous luminosity in Run 1. The first level muon trigger rate is dominated by low momentum muons below...

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Detalles Bibliográficos
Autores principales: Nowak, S., Kroha, H.
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nima.2015.10.052
http://cds.cern.ch/record/2148827
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author Nowak, S.
Kroha, H.
author_facet Nowak, S.
Kroha, H.
author_sort Nowak, S.
collection CERN
description Highly selective triggers are essential for the physics programme of the ATLAS experiment at HL-LHC where the instantaneous luminosity will be about an order of magnitude larger than the LHC instantaneous luminosity in Run 1. The first level muon trigger rate is dominated by low momentum muons below the nominal trigger threshold due to the moderate momentum resolution of the Resistive Plate and Thin Gap trigger chambers. The resulting high trigger rates at HL-LHC can be su?ciently reduced by using the data of the precision Muon Drift Tube chambers for the trigger decision. This requires the implementation of a fast MDT read-out chain and of a fast MDT track reconstruction algorithm with a latency of at most 6 microseconds. A hardware demonstrator of the fast read-out chain has been successfully tested at the HL-LHC operating conditions at the CERN Gamma Irradiation Facility. The fast track reconstruction algorithm has been implemented on a fast trigger processor.
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language eng
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spelling cern-21488272023-03-14T17:39:22Zdoi:10.1016/j.nima.2015.10.052http://cds.cern.ch/record/2148827engNowak, S.Kroha, H.A Highly Selective First-Level Muon Trigger With MDT Chamber Data for ATLAS at HL-LHCDetectors and Experimental TechniquesHighly selective triggers are essential for the physics programme of the ATLAS experiment at HL-LHC where the instantaneous luminosity will be about an order of magnitude larger than the LHC instantaneous luminosity in Run 1. The first level muon trigger rate is dominated by low momentum muons below the nominal trigger threshold due to the moderate momentum resolution of the Resistive Plate and Thin Gap trigger chambers. The resulting high trigger rates at HL-LHC can be su?ciently reduced by using the data of the precision Muon Drift Tube chambers for the trigger decision. This requires the implementation of a fast MDT read-out chain and of a fast MDT track reconstruction algorithm with a latency of at most 6 microseconds. A hardware demonstrator of the fast read-out chain has been successfully tested at the HL-LHC operating conditions at the CERN Gamma Irradiation Facility. The fast track reconstruction algorithm has been implemented on a fast trigger processor.Highly selective triggers are essential for the physics programme of the ATLAS experiment at HL-LHC where the instantaneous luminosity will be about an order of magnitude larger than the LHC instantaneous luminosity in Run 1. The first level muon trigger rate is dominated by low momentum muons below the nominal trigger threshold due to the moderate momentum resolution of the Resistive Plate and Thin Gap trigger chambers. The resulting high trigger rates at HL-LHC can be sufficiently reduced by using the data of the precision Muon Drift Tube chambers for the trigger decision. This requires the implementation of a fast MDT read-out chain and of a fast MDT track reconstruction algorithm with a latency of at most 6 μs. A hardware demonstrator of the fast read-out chain has been successfully tested at the HL-LHC operating conditions at the CERN Gamma Irradiation Facility. The fast track reconstruction algorithm has been implemented on a fast trigger processor.Highly selective triggers are essential for the physics programme of the ATLAS experiment at HL-LHC where the instantaneous luminosity will be about an order of magnitude larger than the LHC instantaneous luminosity in Run 1. The first level muon trigger rate is dominated by low momentum muons below the nominal trigger threshold due to the moderate momentum resolution of the Resistive Plate and Thin Gap trigger chambers. The resulting high trigger rates at HL-LHC can be sufficiently reduced by using the data of the precision Muon Drift Tube chambers for the trigger decision. This requires the implementation of a fast MDT read-out chain and of a fast MDT track reconstruction algorithm with a latency of at most 6 microseconds. A hardware demonstrator of the fast read-out chain has been successfully tested at the HL-LHC operating conditions at the CERN Gamma Irradiation Facility. The fast track reconstruction algorithm has been implemented on a fast trigger processor.arXiv:1604.07599MPP-2015-138MPP-2015-138oai:cds.cern.ch:21488272016-04-26
spellingShingle Detectors and Experimental Techniques
Nowak, S.
Kroha, H.
A Highly Selective First-Level Muon Trigger With MDT Chamber Data for ATLAS at HL-LHC
title A Highly Selective First-Level Muon Trigger With MDT Chamber Data for ATLAS at HL-LHC
title_full A Highly Selective First-Level Muon Trigger With MDT Chamber Data for ATLAS at HL-LHC
title_fullStr A Highly Selective First-Level Muon Trigger With MDT Chamber Data for ATLAS at HL-LHC
title_full_unstemmed A Highly Selective First-Level Muon Trigger With MDT Chamber Data for ATLAS at HL-LHC
title_short A Highly Selective First-Level Muon Trigger With MDT Chamber Data for ATLAS at HL-LHC
title_sort highly selective first-level muon trigger with mdt chamber data for atlas at hl-lhc
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1016/j.nima.2015.10.052
http://cds.cern.ch/record/2148827
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