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ATLAS diamond Beam Condition Monitor

The ATLAS experiment has chosen to use diamond for its Beam Condition Monitor (BCM) given its radiation hardness, low capacitance and short charge collection time. In addition, due to low leakage current diamonds do not require cooling. The ATLAS Beam Condition Monitoring system is based on single b...

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Detalles Bibliográficos
Autores principales: Gorišek, A, Cindro, V, Dolenc, I, Frais-Kölbl, H, Griesmayer, E, Kagan, H, Korpar, S, Kramberger, G, Mandic, I, Meyer, M, Mikuz, M, Pernegger, H, Smith, S, Trischuk, W, Weilhammer, P, Zavrtanik, M
Lenguaje:eng
Publicado: 2007
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nima.2006.10.348
http://cds.cern.ch/record/1062633
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author Gorišek, A
Cindro, V
Dolenc, I
Frais-Kölbl, H
Griesmayer, E
Kagan, H
Korpar, S
Kramberger, G
Mandic, I
Meyer, M
Mikuz, M
Pernegger, H
Smith, S
Trischuk, W
Weilhammer, P
Zavrtanik, M
author_facet Gorišek, A
Cindro, V
Dolenc, I
Frais-Kölbl, H
Griesmayer, E
Kagan, H
Korpar, S
Kramberger, G
Mandic, I
Meyer, M
Mikuz, M
Pernegger, H
Smith, S
Trischuk, W
Weilhammer, P
Zavrtanik, M
author_sort Gorišek, A
collection CERN
description The ATLAS experiment has chosen to use diamond for its Beam Condition Monitor (BCM) given its radiation hardness, low capacitance and short charge collection time. In addition, due to low leakage current diamonds do not require cooling. The ATLAS Beam Condition Monitoring system is based on single beam bunch crossing measurements rather than integrating the accumulated particle flux. Its fast electronics will allow separation of LHC collisions from background events such as beam gas interactions or beam accidents. There will be two stations placed symmetrically about the interaction point along the beam axis at . Timing of signals from the two stations will provide almost ideal separation of beam–beam interactions and background events. The ATLAS BCM module consists of diamond pad detectors of area and thickness coupled to a two-stage RF current amplifier. The production of the final detector modules is almost done. A S/N ratio of 10:1 has been achieved with minimum ionizing particles (MIPs) in the test beam setup at KEK. Results from the test beams and bench measurements are presented.
id cern-1062633
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2007
record_format invenio
spelling cern-10626332019-09-30T06:29:59Zdoi:10.1016/j.nima.2006.10.348http://cds.cern.ch/record/1062633engGorišek, ACindro, VDolenc, IFrais-Kölbl, HGriesmayer, EKagan, HKorpar, SKramberger, GMandic, IMeyer, MMikuz, MPernegger, HSmith, STrischuk, WWeilhammer, PZavrtanik, MATLAS diamond Beam Condition MonitorDetectors and Experimental TechniquesThe ATLAS experiment has chosen to use diamond for its Beam Condition Monitor (BCM) given its radiation hardness, low capacitance and short charge collection time. In addition, due to low leakage current diamonds do not require cooling. The ATLAS Beam Condition Monitoring system is based on single beam bunch crossing measurements rather than integrating the accumulated particle flux. Its fast electronics will allow separation of LHC collisions from background events such as beam gas interactions or beam accidents. There will be two stations placed symmetrically about the interaction point along the beam axis at . Timing of signals from the two stations will provide almost ideal separation of beam–beam interactions and background events. The ATLAS BCM module consists of diamond pad detectors of area and thickness coupled to a two-stage RF current amplifier. The production of the final detector modules is almost done. A S/N ratio of 10:1 has been achieved with minimum ionizing particles (MIPs) in the test beam setup at KEK. Results from the test beams and bench measurements are presented.oai:cds.cern.ch:10626332007
spellingShingle Detectors and Experimental Techniques
Gorišek, A
Cindro, V
Dolenc, I
Frais-Kölbl, H
Griesmayer, E
Kagan, H
Korpar, S
Kramberger, G
Mandic, I
Meyer, M
Mikuz, M
Pernegger, H
Smith, S
Trischuk, W
Weilhammer, P
Zavrtanik, M
ATLAS diamond Beam Condition Monitor
title ATLAS diamond Beam Condition Monitor
title_full ATLAS diamond Beam Condition Monitor
title_fullStr ATLAS diamond Beam Condition Monitor
title_full_unstemmed ATLAS diamond Beam Condition Monitor
title_short ATLAS diamond Beam Condition Monitor
title_sort atlas diamond beam condition monitor
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1016/j.nima.2006.10.348
http://cds.cern.ch/record/1062633
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