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Chameleon Search in CAST Experiment at CERN

Chameleons are hypothetical particles that are proposed as a scalar field to account for the accelerated expansion of the universe, the so-called `dark energy problem'. They are proposed to be produced in the high magnetic field regions inside the Sun and they propagate through or reflect from...

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Autor principal: Bayirli, Arif
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:http://cds.cern.ch/record/2299060
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author Bayirli, Arif
author_facet Bayirli, Arif
author_sort Bayirli, Arif
collection CERN
description Chameleons are hypothetical particles that are proposed as a scalar field to account for the accelerated expansion of the universe, the so-called `dark energy problem'. They are proposed to be produced in the high magnetic field regions inside the Sun and they propagate through or reflect from a medium with the interaction strength depending on the ambient density. The models which characterize the interaction of the chameleons provide two interaction channels: direct coupling to matter dependent on the density and coupling to electromagnetic field by Primakoff effect. CAST Experiment probes the coupling of chameleons with matter with opto-mechanical KWISP detector which is based on Fabry-Perot and Michelson interferometers. In this thesis, starting with an overview of the experimental search efforts of the CAST experiment, theoretical background of the dark energy and the chameleon mechanism will be provided. Then, the detection mechanism based on KWISP detector will be discussed and the versions of the detectors will be introduced. The analysis of the data which were taken on December 2016 will be explained in details and the results will be shown. In the end, results and plans for further improvement of the detector will be discussed.
id cern-2299060
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
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spelling cern-22990602019-09-30T06:29:59Zhttp://cds.cern.ch/record/2299060engBayirli, ArifChameleon Search in CAST Experiment at CERNDetectors and Experimental TechniquesParticle Physics - ExperimentChameleons are hypothetical particles that are proposed as a scalar field to account for the accelerated expansion of the universe, the so-called `dark energy problem'. They are proposed to be produced in the high magnetic field regions inside the Sun and they propagate through or reflect from a medium with the interaction strength depending on the ambient density. The models which characterize the interaction of the chameleons provide two interaction channels: direct coupling to matter dependent on the density and coupling to electromagnetic field by Primakoff effect. CAST Experiment probes the coupling of chameleons with matter with opto-mechanical KWISP detector which is based on Fabry-Perot and Michelson interferometers. In this thesis, starting with an overview of the experimental search efforts of the CAST experiment, theoretical background of the dark energy and the chameleon mechanism will be provided. Then, the detection mechanism based on KWISP detector will be discussed and the versions of the detectors will be introduced. The analysis of the data which were taken on December 2016 will be explained in details and the results will be shown. In the end, results and plans for further improvement of the detector will be discussed.CERN-THESIS-2017-271oai:cds.cern.ch:22990602017-12-25T08:38:50Z
spellingShingle Detectors and Experimental Techniques
Particle Physics - Experiment
Bayirli, Arif
Chameleon Search in CAST Experiment at CERN
title Chameleon Search in CAST Experiment at CERN
title_full Chameleon Search in CAST Experiment at CERN
title_fullStr Chameleon Search in CAST Experiment at CERN
title_full_unstemmed Chameleon Search in CAST Experiment at CERN
title_short Chameleon Search in CAST Experiment at CERN
title_sort chameleon search in cast experiment at cern
topic Detectors and Experimental Techniques
Particle Physics - Experiment
url http://cds.cern.ch/record/2299060
work_keys_str_mv AT bayirliarif chameleonsearchincastexperimentatcern