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Lowering the background level and the energy threshold of Micromegas x-ray detectors for axion searches

Axion helioscopes search for solar axions by their conversion in x-rays in the presence of high magnetic fields. The use of low background x-ray detectors is an essential component contributing to the sensitivity of these searches. In this work, we review the recent advances on Micromegas detectors...

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Autores principales: Iguaz, F.J., Aune, S., Aznar, F., Castel, J.F., Dafni, T., Davenport, M., Ferrer-Ribas, E., Galan, J., Garcia, J.A., Garza, J.G., Giomataris, I., Irastorza, I.G., Papaevangelou, T., Rodriguez, A., Tomas, A., Vafeiadis, T., Yildiz, S.C.
Lenguaje:eng
Publicado: SISSA 2015
Materias:
Acceso en línea:https://dx.doi.org/10.22323/1.213.0295
http://cds.cern.ch/record/1980230
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author Iguaz, F.J.
Aune, S.
Aznar, F.
Castel, J.F.
Dafni, T.
Davenport, M.
Ferrer-Ribas, E.
Galan, J.
Garcia, J.A.
Garza, J.G.
Giomataris, I.
Irastorza, I.G.
Papaevangelou, T.
Rodriguez, A.
Tomas, A.
Vafeiadis, T.
Yildiz, S.C.
author_facet Iguaz, F.J.
Aune, S.
Aznar, F.
Castel, J.F.
Dafni, T.
Davenport, M.
Ferrer-Ribas, E.
Galan, J.
Garcia, J.A.
Garza, J.G.
Giomataris, I.
Irastorza, I.G.
Papaevangelou, T.
Rodriguez, A.
Tomas, A.
Vafeiadis, T.
Yildiz, S.C.
author_sort Iguaz, F.J.
collection CERN
description Axion helioscopes search for solar axions by their conversion in x-rays in the presence of high magnetic fields. The use of low background x-ray detectors is an essential component contributing to the sensitivity of these searches. In this work, we review the recent advances on Micromegas detectors used in the CERN Axion Solar Telescope (CAST) and proposed for the future International Axion Observatory (IAXO). The actual setup in CAST has achieved background levels below 10$^{-6}$ keV$^{-1}$ cm$^{-2}$ s$^{-1}$, a factor 100 lower than the first generation of Micromegas detectors. This reduction is based on active and passive shielding techniques, the selection of radiopure materials, offline discrimination techniques and the high granularity of the readout. We describe in detail the background model of the detector, based on its operation at CAST site and at the Canfranc Underground Laboratory (LSC), as well as on Geant4 simulations. The best levels currently achieved at LSC are low than 10$^{-7}$ keV$^{-1}$ cm$^{-2}$ s$^{-1}$ and show good prospects for the application of this technology in IAXO. Finally, we present some ideas and results for reducing the energy threshold of these detectors below 1 keV, using high-transparent windows, autotrigger electronics and studying the cluster shape at different energies. As a high flux of axion-like-particles is expected in this energy range, a sub-keV threshold detector could enlarge the physics case of axion helioscopes.
id cern-1980230
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
publisher SISSA
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spelling cern-19802302022-08-10T20:32:40Zdoi:10.22323/1.213.0295http://cds.cern.ch/record/1980230engIguaz, F.J.Aune, S.Aznar, F.Castel, J.F.Dafni, T.Davenport, M.Ferrer-Ribas, E.Galan, J.Garcia, J.A.Garza, J.G.Giomataris, I.Irastorza, I.G.Papaevangelou, T.Rodriguez, A.Tomas, A.Vafeiadis, T.Yildiz, S.C.Lowering the background level and the energy threshold of Micromegas x-ray detectors for axion searchesAstrophysics and AstronomyAxion helioscopes search for solar axions by their conversion in x-rays in the presence of high magnetic fields. The use of low background x-ray detectors is an essential component contributing to the sensitivity of these searches. In this work, we review the recent advances on Micromegas detectors used in the CERN Axion Solar Telescope (CAST) and proposed for the future International Axion Observatory (IAXO). The actual setup in CAST has achieved background levels below 10$^{-6}$ keV$^{-1}$ cm$^{-2}$ s$^{-1}$, a factor 100 lower than the first generation of Micromegas detectors. This reduction is based on active and passive shielding techniques, the selection of radiopure materials, offline discrimination techniques and the high granularity of the readout. We describe in detail the background model of the detector, based on its operation at CAST site and at the Canfranc Underground Laboratory (LSC), as well as on Geant4 simulations. The best levels currently achieved at LSC are low than 10$^{-7}$ keV$^{-1}$ cm$^{-2}$ s$^{-1}$ and show good prospects for the application of this technology in IAXO. Finally, we present some ideas and results for reducing the energy threshold of these detectors below 1 keV, using high-transparent windows, autotrigger electronics and studying the cluster shape at different energies. As a high flux of axion-like-particles is expected in this energy range, a sub-keV threshold detector could enlarge the physics case of axion helioscopes.Axion helioscopes search for solar axions by their conversion in x-rays in the presence of high magnetic fields. The use of low background x-ray detectors is an essential component contributing to the sensitivity of these searches. In this work, we review the recent advances on Micromegas detectors used in the CERN Axion Solar Telescope (CAST) and proposed for the future International Axion Observatory (IAXO). The actual setup in CAST has achieved background levels below 10$^{-6}$ keV$^{-1}$ cm$^{-2}$ s$^{-1}$, a factor 100 lower than the first generation of Micromegas detectors. This reduction is based on active and passive shielding techniques, the selection of radiopure materials, offline discrimination techniques and the high granularity of the readout. We describe in detail the background model of the detector, based on its operation at CAST site and at the Canfranc Underground Laboratory (LSC), as well as on Geant4 simulations. The best levels currently achieved at LSC are low than 10$^{-7}$ keV$^{-1}$ cm$^{-2}$ s$^{-1}$ and show good prospects for the application of this technology in IAXO. Finally, we present some ideas and results for reducing the energy threshold of these detectors below 1 keV, using high-transparent windows, autotrigger electronics and studying the cluster shape at different energies. As a high flux of axion-like-particles is expected in this energy range, a sub-keV threshold detector could enlarge the physics case of axion helioscopes.SISSAarXiv:1501.01466oai:cds.cern.ch:19802302015-01-07
spellingShingle Astrophysics and Astronomy
Iguaz, F.J.
Aune, S.
Aznar, F.
Castel, J.F.
Dafni, T.
Davenport, M.
Ferrer-Ribas, E.
Galan, J.
Garcia, J.A.
Garza, J.G.
Giomataris, I.
Irastorza, I.G.
Papaevangelou, T.
Rodriguez, A.
Tomas, A.
Vafeiadis, T.
Yildiz, S.C.
Lowering the background level and the energy threshold of Micromegas x-ray detectors for axion searches
title Lowering the background level and the energy threshold of Micromegas x-ray detectors for axion searches
title_full Lowering the background level and the energy threshold of Micromegas x-ray detectors for axion searches
title_fullStr Lowering the background level and the energy threshold of Micromegas x-ray detectors for axion searches
title_full_unstemmed Lowering the background level and the energy threshold of Micromegas x-ray detectors for axion searches
title_short Lowering the background level and the energy threshold of Micromegas x-ray detectors for axion searches
title_sort lowering the background level and the energy threshold of micromegas x-ray detectors for axion searches
topic Astrophysics and Astronomy
url https://dx.doi.org/10.22323/1.213.0295
http://cds.cern.ch/record/1980230
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