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Results of the 2nd run of OSQAR Photon Regeneration Experiment

Recent intensive theoretical and experimental studies shed light on possible new physics beyond the standard model of particle physics, which can be probed with sub-eV energy experiments. In the second run of the OSQAR photon regeneration experiment, which looks for the conversion of photon to axion...

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Detalles Bibliográficos
Autores principales: Schott, Matthias, Pugnat, Pierre, Ballou, Rafik, Duvillaret, Lionel, Husek, Tomas, Jost, Remy, Flekova, Lucie, Finger, Michael, Finger, Miroslav, Hosek, Jan, Kral, Miroslav, Macuchova, Karolina, Meissner, Krzysztof A., Morville, Jerome, Romanini, Daniele, Siemko, Andrzej, Slunecka, Miroslav, Sulc, Miroslav, Vitrant, Guy, Zicha, Josef
Lenguaje:eng
Publicado: 2011
Materias:
Acceso en línea:http://cds.cern.ch/record/1387838
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author Schott, Matthias
Pugnat, Pierre
Ballou, Rafik
Duvillaret, Lionel
Husek, Tomas
Jost, Remy
Flekova, Lucie
Finger, Michael
Finger, Miroslav
Hosek, Jan
Kral, Miroslav
Macuchova, Karolina
Meissner, Krzysztof A.
Morville, Jerome
Romanini, Daniele
Siemko, Andrzej
Slunecka, Miroslav
Sulc, Miroslav
Vitrant, Guy
Zicha, Josef
author_facet Schott, Matthias
Pugnat, Pierre
Ballou, Rafik
Duvillaret, Lionel
Husek, Tomas
Jost, Remy
Flekova, Lucie
Finger, Michael
Finger, Miroslav
Hosek, Jan
Kral, Miroslav
Macuchova, Karolina
Meissner, Krzysztof A.
Morville, Jerome
Romanini, Daniele
Siemko, Andrzej
Slunecka, Miroslav
Sulc, Miroslav
Vitrant, Guy
Zicha, Josef
author_sort Schott, Matthias
collection CERN
description Recent intensive theoretical and experimental studies shed light on possible new physics beyond the standard model of particle physics, which can be probed with sub-eV energy experiments. In the second run of the OSQAR photon regeneration experiment, which looks for the conversion of photon to axion (or Axion-Like Particle), two spare superconducting dipole magnets of the Large Hadron Collider (LHC) have been used. In this paper we report on first results obtained from a light beam propagating in vacuum within the 9 T field of two LHC dipole magnets. No excess of events above the background was detected and the two-photon couplings of possible new scalar and pseudo-scalar particles could be constrained.
id cern-1387838
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2011
record_format invenio
spelling cern-13878382023-03-15T19:12:29Zhttp://cds.cern.ch/record/1387838engSchott, MatthiasPugnat, PierreBallou, RafikDuvillaret, LionelHusek, TomasJost, RemyFlekova, LucieFinger, MichaelFinger, MiroslavHosek, JanKral, MiroslavMacuchova, KarolinaMeissner, Krzysztof A.Morville, JeromeRomanini, DanieleSiemko, AndrzejSlunecka, MiroslavSulc, MiroslavVitrant, GuyZicha, JosefResults of the 2nd run of OSQAR Photon Regeneration ExperimentParticle Physics - ExperimentRecent intensive theoretical and experimental studies shed light on possible new physics beyond the standard model of particle physics, which can be probed with sub-eV energy experiments. In the second run of the OSQAR photon regeneration experiment, which looks for the conversion of photon to axion (or Axion-Like Particle), two spare superconducting dipole magnets of the Large Hadron Collider (LHC) have been used. In this paper we report on first results obtained from a light beam propagating in vacuum within the 9 T field of two LHC dipole magnets. No excess of events above the background was detected and the two-photon couplings of possible new scalar and pseudo-scalar particles could be constrained.Recent intensive theoretical and experimental studies shed light on possible new physics beyond the standard model of particle physics, which can be probed with sub-eV energy experiments. In the second run of the OSQAR photon regeneration experiment, which looks for the conversion of photon to axion (or Axion-Like Particle), two spare superconducting dipole magnets of the Large Hadron Collider (LHC) have been used. In this paper we report on first results obtained from a light beam propagating in vacuum within the 9 T field of two LHC dipole magnets. No excess of events above the background was detected and the two-photon couplings of possible new scalar and pseudo-scalar particles could be constrained.arXiv:1110.0774oai:cds.cern.ch:13878382011-10-05
spellingShingle Particle Physics - Experiment
Schott, Matthias
Pugnat, Pierre
Ballou, Rafik
Duvillaret, Lionel
Husek, Tomas
Jost, Remy
Flekova, Lucie
Finger, Michael
Finger, Miroslav
Hosek, Jan
Kral, Miroslav
Macuchova, Karolina
Meissner, Krzysztof A.
Morville, Jerome
Romanini, Daniele
Siemko, Andrzej
Slunecka, Miroslav
Sulc, Miroslav
Vitrant, Guy
Zicha, Josef
Results of the 2nd run of OSQAR Photon Regeneration Experiment
title Results of the 2nd run of OSQAR Photon Regeneration Experiment
title_full Results of the 2nd run of OSQAR Photon Regeneration Experiment
title_fullStr Results of the 2nd run of OSQAR Photon Regeneration Experiment
title_full_unstemmed Results of the 2nd run of OSQAR Photon Regeneration Experiment
title_short Results of the 2nd run of OSQAR Photon Regeneration Experiment
title_sort results of the 2nd run of osqar photon regeneration experiment
topic Particle Physics - Experiment
url http://cds.cern.ch/record/1387838
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