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Low Background Micromegas in CAST

Solar axions could be converted into x-rays inside the strong magnetic field of an axion helioscope, triggering the detection of this elusive particle. Low background x-ray detectors are an essential component for the sensitivity of these searches. We report on the latest developments of the Microme...

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Autores principales: Garza, J.G., Aune, S., Aznar, F., Calvet, D., Castel, J.F., Christensen, F.E., Dafni, T., Davenport, M., Decker, T., Ferrer-Ribas, E., Galán, J., García, J.A., Giomataris, I., Hill, R.M., Iguaz, F.J., Irastorza, I.G., Jakobsen, A.C., Jourde, D., Mirallas, H., Ortega, I., Papaevangelou, T., Pivovaroff, M.J., Ruz, J., Tomás, A., Vafeiadis, T., Vogel, J.K.
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1742-6596/650/1/012008
http://cds.cern.ch/record/2004011
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author Garza, J.G.
Aune, S.
Aznar, F.
Calvet, D.
Castel, J.F.
Christensen, F.E.
Dafni, T.
Davenport, M.
Decker, T.
Ferrer-Ribas, E.
Galán, J.
García, J.A.
Giomataris, I.
Hill, R.M.
Iguaz, F.J.
Irastorza, I.G.
Jakobsen, A.C.
Jourde, D.
Mirallas, H.
Ortega, I.
Papaevangelou, T.
Pivovaroff, M.J.
Ruz, J.
Tomás, A.
Vafeiadis, T.
Vogel, J.K.
author_facet Garza, J.G.
Aune, S.
Aznar, F.
Calvet, D.
Castel, J.F.
Christensen, F.E.
Dafni, T.
Davenport, M.
Decker, T.
Ferrer-Ribas, E.
Galán, J.
García, J.A.
Giomataris, I.
Hill, R.M.
Iguaz, F.J.
Irastorza, I.G.
Jakobsen, A.C.
Jourde, D.
Mirallas, H.
Ortega, I.
Papaevangelou, T.
Pivovaroff, M.J.
Ruz, J.
Tomás, A.
Vafeiadis, T.
Vogel, J.K.
author_sort Garza, J.G.
collection CERN
description Solar axions could be converted into x-rays inside the strong magnetic field of an axion helioscope, triggering the detection of this elusive particle. Low background x-ray detectors are an essential component for the sensitivity of these searches. We report on the latest developments of the Micromegas detectors for the CERN Axion Solar Telescope (CAST), including technological pathfinder activities for the future International Axion Observatory (IAXO). The use of low background techniques and the application of discrimination algorithms based on the high granularity of the readout have led to background levels below 10$^{-6}$ counts/keV/cm$^2$/s, more than a factor 100 lower than the first generation of Micromegas detectors. The best levels achieved at the Canfranc Underground Laboratory (LSC) are as low as 10$^{-7}$ counts/keV/cm$^2$/s, showing good prospects for the application of this technology in IAXO. The current background model, based on underground and surface measurements, is presented, as well as the strategies to further reduce the background level. Finally, we will describe the R&D paths to achieve sub-keV energy thresholds, which could broaden the physics case of axion helioscopes.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
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spelling cern-20040112023-03-14T17:20:42Zdoi:10.1088/1742-6596/650/1/012008http://cds.cern.ch/record/2004011engGarza, J.G.Aune, S.Aznar, F.Calvet, D.Castel, J.F.Christensen, F.E.Dafni, T.Davenport, M.Decker, T.Ferrer-Ribas, E.Galán, J.García, J.A.Giomataris, I.Hill, R.M.Iguaz, F.J.Irastorza, I.G.Jakobsen, A.C.Jourde, D.Mirallas, H.Ortega, I.Papaevangelou, T.Pivovaroff, M.J.Ruz, J.Tomás, A.Vafeiadis, T.Vogel, J.K.Low Background Micromegas in CASTDetectors and Experimental TechniquesSolar axions could be converted into x-rays inside the strong magnetic field of an axion helioscope, triggering the detection of this elusive particle. Low background x-ray detectors are an essential component for the sensitivity of these searches. We report on the latest developments of the Micromegas detectors for the CERN Axion Solar Telescope (CAST), including technological pathfinder activities for the future International Axion Observatory (IAXO). The use of low background techniques and the application of discrimination algorithms based on the high granularity of the readout have led to background levels below 10$^{-6}$ counts/keV/cm$^2$/s, more than a factor 100 lower than the first generation of Micromegas detectors. The best levels achieved at the Canfranc Underground Laboratory (LSC) are as low as 10$^{-7}$ counts/keV/cm$^2$/s, showing good prospects for the application of this technology in IAXO. The current background model, based on underground and surface measurements, is presented, as well as the strategies to further reduce the background level. Finally, we will describe the R&D paths to achieve sub-keV energy thresholds, which could broaden the physics case of axion helioscopes.Solar axions could be converted into x-rays inside the strong magnetic field of an axion helioscope, triggering the detection of this elusive particle. Low background x-ray detectors are an essential component for the sensitivity of these searches. We report on the latest developments of the Micromegas detectors for the CERN Axion Solar Telescope (CAST), including technological pathfinder activities for the future International Axion Observatory (IAXO). The use of low background techniques and the application of discrimination algorithms based on the high granularity of the readout have led to background levels below 10(-6) counts/keV/cm(2)/s, more than a factor 100 lower than the first generation of Micromegas detectors. The best levels achieved at the Canfranc Underground Laboratory (LSC) are as low as 10(-7) counts/keV/cm(2)/s, showing good prospects for the application of this technology in IAXO. The current background model, based on underground and surface measurements, is presented, as well as the strategies to further reduce the background level. Finally, we will describe the R&D paths to achieve sub-keV energy thresholds, which could broaden the physics case of axion helioscopes.Solar axions could be converted into x-rays inside the strong magnetic field of an axion helioscope, triggering the detection of this elusive particle. Low background x-ray detectors are an essential component for the sensitivity of these searches. We report on the latest developments of the Micromegas detectors for the CERN Axion Solar Telescope (CAST), including technological pathfinder activities for the future International Axion Observatory (IAXO). The use of low background techniques and the application of discrimination algorithms based on the high granularity of the readout have led to background levels below 10$^{-6}$ counts/keV/cm$^2$/s, more than a factor 100 lower than the first generation of Micromegas detectors. The best levels achieved at the Canfranc Underground Laboratory (LSC) are as low as 10$^{-7}$ counts/keV/cm$^2$/s, showing good prospects for the application of this technology in IAXO. The current background model, based on underground and surface measurements, is presented, as well as the strategies to further reduce the background level. Finally, we will describe the R&D paths to achieve sub-keV energy thresholds, which could broaden the physics case of axion helioscopes.arXiv:1503.05107oai:cds.cern.ch:20040112015-03-17
spellingShingle Detectors and Experimental Techniques
Garza, J.G.
Aune, S.
Aznar, F.
Calvet, D.
Castel, J.F.
Christensen, F.E.
Dafni, T.
Davenport, M.
Decker, T.
Ferrer-Ribas, E.
Galán, J.
García, J.A.
Giomataris, I.
Hill, R.M.
Iguaz, F.J.
Irastorza, I.G.
Jakobsen, A.C.
Jourde, D.
Mirallas, H.
Ortega, I.
Papaevangelou, T.
Pivovaroff, M.J.
Ruz, J.
Tomás, A.
Vafeiadis, T.
Vogel, J.K.
Low Background Micromegas in CAST
title Low Background Micromegas in CAST
title_full Low Background Micromegas in CAST
title_fullStr Low Background Micromegas in CAST
title_full_unstemmed Low Background Micromegas in CAST
title_short Low Background Micromegas in CAST
title_sort low background micromegas in cast
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1088/1742-6596/650/1/012008
http://cds.cern.ch/record/2004011
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