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Design and Construction of Large Size Micromegas Chambers for the Upgrade of the ATLAS Muon Spectrometer

Large area Micromegas detectors will be employed for the first time in high-energy physics experiments. A total surface of about $\mathbf{150~m^2}$ of the forward regions of the Muon Spectrometer of the ATLAS detector at LHC will be equipped with 8-layer Micromegas modules. Each layer covers more th...

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Autores principales: Lösel, Philipp, Müller, Ralph
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:http://cds.cern.ch/record/2042404
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author Lösel, Philipp
Müller, Ralph
author_facet Lösel, Philipp
Müller, Ralph
author_sort Lösel, Philipp
collection CERN
description Large area Micromegas detectors will be employed for the first time in high-energy physics experiments. A total surface of about $\mathbf{150~m^2}$ of the forward regions of the Muon Spectrometer of the ATLAS detector at LHC will be equipped with 8-layer Micromegas modules. Each layer covers more than $\mathbf{2~m^2}$ for a total active area of $\mathbf{1200~m^2}$. Together with the small strip Thin Gap Chambers they will compose the two New Small Wheels, which will replace the innermost stations of the ATLAS endcap muon tracking system in the 2018/19 shutdown. In order to achieve a 15$\mathbf{\%}$ transverse momentum resolution for $\mathbf{1~TeV}$ muons, in addition to an excellent intrinsic resolution, the mechanical precision of each plane of the assembled module must be as good as $\mathbf{30~\mu m}$ along the precision coordinate and $\mathbf{80~\mu m}$ perpendicular to the chamber. The design and construction procedure of the Micromegas modules will be presented, as well as the design for the assembly of modules onto the New Small Wheel. Emphasis will be on the methods developed to achieve the challenging mechanical precision. Measurements and simulations of deformations created on chamber prototypes as a function of thermal gradients, internal stress (mesh tension and module fixation on supports) and gas over-pressure were essential in the development of the final design. During installation and operation all deformations and relative misalignments will be monitored by an optical alignment system and compensated in the tracking software.
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spelling cern-20424042021-12-31T03:04:58Zhttp://cds.cern.ch/record/2042404engLösel, PhilippMüller, RalphDesign and Construction of Large Size Micromegas Chambers for the Upgrade of the ATLAS Muon SpectrometerDetectors and Experimental TechniquesLarge area Micromegas detectors will be employed for the first time in high-energy physics experiments. A total surface of about $\mathbf{150~m^2}$ of the forward regions of the Muon Spectrometer of the ATLAS detector at LHC will be equipped with 8-layer Micromegas modules. Each layer covers more than $\mathbf{2~m^2}$ for a total active area of $\mathbf{1200~m^2}$. Together with the small strip Thin Gap Chambers they will compose the two New Small Wheels, which will replace the innermost stations of the ATLAS endcap muon tracking system in the 2018/19 shutdown. In order to achieve a 15$\mathbf{\%}$ transverse momentum resolution for $\mathbf{1~TeV}$ muons, in addition to an excellent intrinsic resolution, the mechanical precision of each plane of the assembled module must be as good as $\mathbf{30~\mu m}$ along the precision coordinate and $\mathbf{80~\mu m}$ perpendicular to the chamber. The design and construction procedure of the Micromegas modules will be presented, as well as the design for the assembly of modules onto the New Small Wheel. Emphasis will be on the methods developed to achieve the challenging mechanical precision. Measurements and simulations of deformations created on chamber prototypes as a function of thermal gradients, internal stress (mesh tension and module fixation on supports) and gas over-pressure were essential in the development of the final design. During installation and operation all deformations and relative misalignments will be monitored by an optical alignment system and compensated in the tracking software.Large area Micromegas detectors will be employed for the first time in high-energy physics experiments. A total surface of about $\mathbf{150~m^2}$ of the forward regions of the Muon Spectrometer of the ATLAS detector at LHC will be equipped with 8-layer Micromegas modules. Each layer covers more than $\mathbf{2~m^2}$ for a total active area of $\mathbf{1200~m^2}$. Together with the small strip Thin Gap Chambers they will compose the two New Small Wheels, which will replace the innermost stations of the ATLAS endcap muon tracking system in the 2018/19 shutdown. In order to achieve a 15$\mathbf{\%}$ transverse momentum resolution for $\mathbf{1~TeV}$ muons, in addition to an excellent intrinsic resolution, the mechanical precision of each plane of the assembled module must be as good as $\mathbf{30~\mu m}$ along the precision coordinate and $\mathbf{80~\mu m}$ perpendicular to the chamber. The design and construction procedure of the Micromegas modules will be presented, as well as the design for the assembly of modules onto the New Small Wheel. Emphasis will be on the methods developed to achieve the challenging mechanical precision. Measurements and simulations of deformations created on chamber prototypes as a function of thermal gradients, internal stress (mesh tension and module fixation on supports) and gas over-pressure were essential in the development of the final design. During installation and operation all deformations and relative misalignments will be monitored by an optical alignment system and compensated in the tracking software.arXiv:1508.02541oai:cds.cern.ch:20424042015-08-11
spellingShingle Detectors and Experimental Techniques
Lösel, Philipp
Müller, Ralph
Design and Construction of Large Size Micromegas Chambers for the Upgrade of the ATLAS Muon Spectrometer
title Design and Construction of Large Size Micromegas Chambers for the Upgrade of the ATLAS Muon Spectrometer
title_full Design and Construction of Large Size Micromegas Chambers for the Upgrade of the ATLAS Muon Spectrometer
title_fullStr Design and Construction of Large Size Micromegas Chambers for the Upgrade of the ATLAS Muon Spectrometer
title_full_unstemmed Design and Construction of Large Size Micromegas Chambers for the Upgrade of the ATLAS Muon Spectrometer
title_short Design and Construction of Large Size Micromegas Chambers for the Upgrade of the ATLAS Muon Spectrometer
title_sort design and construction of large size micromegas chambers for the upgrade of the atlas muon spectrometer
topic Detectors and Experimental Techniques
url http://cds.cern.ch/record/2042404
work_keys_str_mv AT loselphilipp designandconstructionoflargesizemicromegaschambersfortheupgradeoftheatlasmuonspectrometer
AT mullerralph designandconstructionoflargesizemicromegaschambersfortheupgradeoftheatlasmuonspectrometer