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Alpine Pixel Detector Layout

A description of an optimized layout of pixel sensors based on a stave that combines both barrel and endcap module orientations. The mechanical stiffness of the structure is provided by carbon fiber shells spaced by carbon foam. The cooling of the modules is provided by two-phase $CO_{2}$ flowing in...

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Detalles Bibliográficos
Autores principales: Delebecque, P, Elles, S, Geffroy, N, Massol, N, Rambure, T, Todorov, T
Lenguaje:eng
Publicado: 2013
Materias:
Acceso en línea:http://cds.cern.ch/record/1516529
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author Delebecque, P
Elles, S
Geffroy, N
Massol, N
Rambure, T
Todorov, T
author_facet Delebecque, P
Elles, S
Geffroy, N
Massol, N
Rambure, T
Todorov, T
author_sort Delebecque, P
collection CERN
description A description of an optimized layout of pixel sensors based on a stave that combines both barrel and endcap module orientations. The mechanical stiffness of the structure is provided by carbon fiber shells spaced by carbon foam. The cooling of the modules is provided by two-phase $CO_{2}$ flowing in a thin titanium pipe glued inside the carbon fiber foam. The electrical services of all modules are provided by a single stave flex. This layout eliminates the need for separate barrel and endcap detector structures, and therefore the barrel services material in front of the endcap. The transition from barrel to endcap module orientation is optimized separately for each layer in order to minimize the active pixel area and the traversed material. The sparse module spacing in the endcap part of the stave allows for multiple fixation points, and for a stiff overall structure composed only of staves interconnected by stiff disks.
id cern-1516529
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2013
record_format invenio
spelling cern-15165292019-09-30T06:29:59Zhttp://cds.cern.ch/record/1516529engDelebecque, PElles, SGeffroy, NMassol, NRambure, TTodorov, TAlpine Pixel Detector LayoutDetectors and Experimental TechniquesA description of an optimized layout of pixel sensors based on a stave that combines both barrel and endcap module orientations. The mechanical stiffness of the structure is provided by carbon fiber shells spaced by carbon foam. The cooling of the modules is provided by two-phase $CO_{2}$ flowing in a thin titanium pipe glued inside the carbon fiber foam. The electrical services of all modules are provided by a single stave flex. This layout eliminates the need for separate barrel and endcap detector structures, and therefore the barrel services material in front of the endcap. The transition from barrel to endcap module orientation is optimized separately for each layer in order to minimize the active pixel area and the traversed material. The sparse module spacing in the endcap part of the stave allows for multiple fixation points, and for a stiff overall structure composed only of staves interconnected by stiff disks.ATL-UPGRADE-PUB-2013-009oai:cds.cern.ch:15165292013-02-14
spellingShingle Detectors and Experimental Techniques
Delebecque, P
Elles, S
Geffroy, N
Massol, N
Rambure, T
Todorov, T
Alpine Pixel Detector Layout
title Alpine Pixel Detector Layout
title_full Alpine Pixel Detector Layout
title_fullStr Alpine Pixel Detector Layout
title_full_unstemmed Alpine Pixel Detector Layout
title_short Alpine Pixel Detector Layout
title_sort alpine pixel detector layout
topic Detectors and Experimental Techniques
url http://cds.cern.ch/record/1516529
work_keys_str_mv AT delebecquep alpinepixeldetectorlayout
AT elless alpinepixeldetectorlayout
AT geffroyn alpinepixeldetectorlayout
AT massoln alpinepixeldetectorlayout
AT ramburet alpinepixeldetectorlayout
AT todorovt alpinepixeldetectorlayout