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Probing the eV-Mass range for solar axions with CAST

  • S. Aune
  • , K. Barth
  • , A. Belov
  • , S. Borghi
  • , H. Bräuninger
  • , G. Cantatore
  • , J. M. Carmona
  • , S. A. Cetin
  • , J. I. Collar
  • , T. Dafni
  • , M. Davenport
  • , C. Eleftheriadis
  • , N. Elias
  • , C. Ezer
  • , G. Fanourakis
  • , E. Ferrer-Ribas
  • , H. Fischer
  • , J. Franz
  • , P. Friedrich
  • , J. Galán
  • A. Gardikiotis, E. N. Gazis, T. Geralis, I. Giomataris, S. Gninenko, H. Gómez, E. Gruber, T. Guthörl, R. Hartmann, F. Haug, M. D. Hasinoff, D. H.H. Hoffmann, F. J. Iguaz, I. G. Irastorza, J. Jacoby, K. Jakovčić, D. Kang, T. Karageorgopoulou, M. Karuza, K. Königsmann, R. Kotthaus, M. Krčmar, K. Kousouris, M. Kuster, B. Lakić, P. Lang, C. Lasseur, J. M. Laurent, A. Liolios, A. Ljubiçić, V. Lozza, G. Lutz, G. Luzón, D. W. Miller, A. Mirizzi, J. Morales, T. Niinikoski, A. Nordt, T. Papaevangelou, M. J. Pivovaroff, G. Raiteri, G. Raffelt, T. Rashba, H. Riege, A. Rodríguez, M. Rosu, J. Ruz, I. Savvidis, Y. Semertzidis, P. Serpico, P. S. Silva, S. K. Solanki, R. Soufli, L. Stewart, A. Tomás, M. Tsagri, K. Van Bibber, T. Vafeiadis, J. Villar, Julia K. Vogel, L. Walckiers, Y. Y.Y. Wong, S. C. Yildiz, K. Zioutas

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

The CERN Axion Solar Telescope (CAST) is searching for solar axions which could be produced in the core of the Sun via the so-called Primakoff effect. Not only would these hypothetical particles solve the strong CP problem, but they are also one of the favored candidates for dark matter. In order to look for axions originating from the Sun, CAST uses a decommissioned LHC prototype magnet. In its 10 m long magnetic field region of 9 Tesla, axions could be reconverted into X-ray photons. Different X-ray detectors are installed on both ends of the magnet, which is mounted on a structure built to follow the Sun during sunrise and sunset for a total of about 3 hours per day. The analysis of the data acquired during the first phase of the experiment with vacuum in the magnetic field region yielded the most restrictive experimental upper limit on the axion-to-photon coupling constant for axion masses up to about 0.02 eV. In order to extend the sensitivity of the experiment to a wider mass range, the CAST experiment continues its search for axions with helium in the magnet bores. In this way it is possible to restore coherence of conversion for larger masses. Changing the pressure of the helium gas enables the experiment to scan different axion masses in the range of up to about 1.2 eV. Especially at high pressures, a precise knowledge of the gas density distribution is crucial to obtain accurate results. In the first part of this second phase of CAST, 4He was used and the axion mass region was extended up to 0.39 eV, a part of phase space favored by axion models. In CAST's ongoing 3He phase the studied mass range is now being extended further. In this contribution the final results of CAST's 4He phase will be presented and the current status of the 3He run will be given. This includes latest results as well as prospects of future axion experiments.

Original languageEnglish
Title of host publicationIEEE Nuclear Science Symposuim and Medical Imaging Conference, NSS/MIC 2010
Pages342-346
Number of pages5
DOIs
Publication statusPublished - 2010
Event2010 IEEE Nuclear Science Symposium, Medical Imaging Conference, NSS/MIC 2010 and 17th International Workshop on Room-Temperature Semiconductor X-ray and Gamma-ray Detectors, RTSD 2010 - Knoxville, TN, United States
Duration: 30 Oct 20106 Nov 2010

Publication series

NameIEEE Nuclear Science Symposium Conference Record
ISSN (Print)1095-7863

Conference

Conference2010 IEEE Nuclear Science Symposium, Medical Imaging Conference, NSS/MIC 2010 and 17th International Workshop on Room-Temperature Semiconductor X-ray and Gamma-ray Detectors, RTSD 2010
Country/TerritoryUnited States
CityKnoxville, TN
Period30/10/106/11/10

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