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Timing resolution studies of the optical part of the AFP Time-of-flight detector

We present results of the timing performance studies of the optical part and front-end electronics of the time-of-flight subdetector prototype for the ATLAS Forward Proton (AFP) detector obtained during the test campaigns at the CERN-SPS test-beam facility (120 GeV $\pi ^+$ particles) in July 2016 a...

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Autores principales: Chytka, L, Avoni, G, Brandt, A, Cavallaro, E, Davis, P M, Förster, F, Hrabovsky, M, Huang, Y, Jirakova, K, Kocian, M, Komarek, T, Korcyl, K, Lange, J, Michalek, V, Nozka, L, Lopez Paz, I, Rijssenbeek, M, Schovanek, P, Sykora, T, Urbasek, V
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.1364/OE.26.008028
http://cds.cern.ch/record/2667193
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author Chytka, L
Avoni, G
Brandt, A
Cavallaro, E
Davis, P M
Förster, F
Hrabovsky, M
Huang, Y
Jirakova, K
Kocian, M
Komarek, T
Korcyl, K
Lange, J
Michalek, V
Nozka, L
Lopez Paz, I
Rijssenbeek, M
Schovanek, P
Sykora, T
Urbasek, V
author_facet Chytka, L
Avoni, G
Brandt, A
Cavallaro, E
Davis, P M
Förster, F
Hrabovsky, M
Huang, Y
Jirakova, K
Kocian, M
Komarek, T
Korcyl, K
Lange, J
Michalek, V
Nozka, L
Lopez Paz, I
Rijssenbeek, M
Schovanek, P
Sykora, T
Urbasek, V
author_sort Chytka, L
collection CERN
description We present results of the timing performance studies of the optical part and front-end electronics of the time-of-flight subdetector prototype for the ATLAS Forward Proton (AFP) detector obtained during the test campaigns at the CERN-SPS test-beam facility (120 GeV $\pi ^+$ particles) in July 2016 and October 2016. The time-of-flight (ToF) detector in conjunction with a 3D silicon pixel tracker will tag and measure protons originating in central exclusive interactions $p + p \rightarrow p + X + p$, where the two outgoing protons are scattered in the very forward directions. The ToF is required to reduce so-called pileup backgrounds that arise from multiple proton interactions in the same bunch crossing at high luminosity. The background can fake the signal of interest, and the extra rejection from the ToF allows the proton tagger to operate at the high luminosity required for the measurement of the processes. The prototype detector uses fused silica bars emitting Cherenkov radiation as a relativistic particle passes through them. The emitted Cherenkov photons are detected by a multi-anode micro-channel plate photomultiplier tube (MCP-PMT) and processed by fast electronics.
id oai-inspirehep.net-1696260
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
record_format invenio
spelling oai-inspirehep.net-16962602019-09-30T06:29:59Zdoi:10.1364/OE.26.008028http://cds.cern.ch/record/2667193engChytka, LAvoni, GBrandt, ACavallaro, EDavis, P MFörster, FHrabovsky, MHuang, YJirakova, KKocian, MKomarek, TKorcyl, KLange, JMichalek, VNozka, LLopez Paz, IRijssenbeek, MSchovanek, PSykora, TUrbasek, VTiming resolution studies of the optical part of the AFP Time-of-flight detectorDetectors and Experimental TechniquesWe present results of the timing performance studies of the optical part and front-end electronics of the time-of-flight subdetector prototype for the ATLAS Forward Proton (AFP) detector obtained during the test campaigns at the CERN-SPS test-beam facility (120 GeV $\pi ^+$ particles) in July 2016 and October 2016. The time-of-flight (ToF) detector in conjunction with a 3D silicon pixel tracker will tag and measure protons originating in central exclusive interactions $p + p \rightarrow p + X + p$, where the two outgoing protons are scattered in the very forward directions. The ToF is required to reduce so-called pileup backgrounds that arise from multiple proton interactions in the same bunch crossing at high luminosity. The background can fake the signal of interest, and the extra rejection from the ToF allows the proton tagger to operate at the high luminosity required for the measurement of the processes. The prototype detector uses fused silica bars emitting Cherenkov radiation as a relativistic particle passes through them. The emitted Cherenkov photons are detected by a multi-anode micro-channel plate photomultiplier tube (MCP-PMT) and processed by fast electronics.oai:inspirehep.net:16962602018
spellingShingle Detectors and Experimental Techniques
Chytka, L
Avoni, G
Brandt, A
Cavallaro, E
Davis, P M
Förster, F
Hrabovsky, M
Huang, Y
Jirakova, K
Kocian, M
Komarek, T
Korcyl, K
Lange, J
Michalek, V
Nozka, L
Lopez Paz, I
Rijssenbeek, M
Schovanek, P
Sykora, T
Urbasek, V
Timing resolution studies of the optical part of the AFP Time-of-flight detector
title Timing resolution studies of the optical part of the AFP Time-of-flight detector
title_full Timing resolution studies of the optical part of the AFP Time-of-flight detector
title_fullStr Timing resolution studies of the optical part of the AFP Time-of-flight detector
title_full_unstemmed Timing resolution studies of the optical part of the AFP Time-of-flight detector
title_short Timing resolution studies of the optical part of the AFP Time-of-flight detector
title_sort timing resolution studies of the optical part of the afp time-of-flight detector
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1364/OE.26.008028
http://cds.cern.ch/record/2667193
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