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Forward physics with the ATLAS detector: Design of radiation resistant descendant of the ALFA detector, detector AFP

Forward detectors of high energy collider experiments allow to tag and measure remnants of a colliding particle moving in a very forward direction that are of interest e.g. for measurements of diffractive processes, where one or both colliding particles are not dissociated and continue in the forwar...

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Detalles Bibliográficos
Autor principal: Chytka, Ladislav
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:http://cds.cern.ch/record/2669649
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author Chytka, Ladislav
author_facet Chytka, Ladislav
author_sort Chytka, Ladislav
collection CERN
description Forward detectors of high energy collider experiments allow to tag and measure remnants of a colliding particle moving in a very forward direction that are of interest e.g. for measurements of diffractive processes, where one or both colliding particles are not dissociated and continue in the forward direction. Ever increasing luminosity in collider experiments leads to increased pileup of interactions and a time-of-flight system is necessary for forward detectors in order to determine the primary interaction vertex of recorded particles. The presented work introduces the ATLAS experiment, its forward detectors and selected topics of forward physics, summarizes author's work on simulation of the ATLAS forward detectors and documents authors contribution to the development of AFP time-of-flight system with sub-30 ps time resolution.
id cern-2669649
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
record_format invenio
spelling cern-26696492019-09-30T06:29:59Zhttp://cds.cern.ch/record/2669649engChytka, LadislavForward physics with the ATLAS detector: Design of radiation resistant descendant of the ALFA detector, detector AFPDetectors and Experimental TechniquesForward detectors of high energy collider experiments allow to tag and measure remnants of a colliding particle moving in a very forward direction that are of interest e.g. for measurements of diffractive processes, where one or both colliding particles are not dissociated and continue in the forward direction. Ever increasing luminosity in collider experiments leads to increased pileup of interactions and a time-of-flight system is necessary for forward detectors in order to determine the primary interaction vertex of recorded particles. The presented work introduces the ATLAS experiment, its forward detectors and selected topics of forward physics, summarizes author's work on simulation of the ATLAS forward detectors and documents authors contribution to the development of AFP time-of-flight system with sub-30 ps time resolution.CERN-THESIS-2018-383oai:cds.cern.ch:26696492019-04-01T07:20:32Z
spellingShingle Detectors and Experimental Techniques
Chytka, Ladislav
Forward physics with the ATLAS detector: Design of radiation resistant descendant of the ALFA detector, detector AFP
title Forward physics with the ATLAS detector: Design of radiation resistant descendant of the ALFA detector, detector AFP
title_full Forward physics with the ATLAS detector: Design of radiation resistant descendant of the ALFA detector, detector AFP
title_fullStr Forward physics with the ATLAS detector: Design of radiation resistant descendant of the ALFA detector, detector AFP
title_full_unstemmed Forward physics with the ATLAS detector: Design of radiation resistant descendant of the ALFA detector, detector AFP
title_short Forward physics with the ATLAS detector: Design of radiation resistant descendant of the ALFA detector, detector AFP
title_sort forward physics with the atlas detector: design of radiation resistant descendant of the alfa detector, detector afp
topic Detectors and Experimental Techniques
url http://cds.cern.ch/record/2669649
work_keys_str_mv AT chytkaladislav forwardphysicswiththeatlasdetectordesignofradiationresistantdescendantofthealfadetectordetectorafp