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An x-ray detector for a solar axion search was developed. The detector is operated at 60K in a cryostat of a superconducting magnet. Special care was paid to microphonic noise immunity and mechanical structure against thermal contraction.…

Astrophysics · Physics 2009-11-07 T. Namba , Y. Inoue , S. Moriyama , M. Minowa

We present results from the CERN Axion Solar Telescope (CAST) and the Axion Dark Matter eXperiment (ADMX), together with a brief review on prospects on Axion searches with a variety of experimental techniques. CAST has explored masses up to…

High Energy Physics - Experiment · Physics 2019-08-13 T. Geralis

Hypothetical axion-like particles with a two-photon interaction would be produced in the sun by the Primakoff process. In a laboratory magnetic field they would be transformed into X-rays with energies of a few keV. The CAST experiment at…

High Energy Physics - Experiment · Physics 2019-08-14 Berta Beltran

The CERN Axion Solar Telescope (CAST) searches for axions coming from photon to axion conversion in the sun's core, as stated by the Primakoff effect. Axions arise in particle physics as a consequence of the breaking of Peccei-Quinn…

Astrophysics · Physics 2017-08-23 C. Eleftheriadis et al

We discuss the physics case for and the concept of a medium-scale axion helioscope with sensitivities in the axion-photon coupling a few times better than CERN Axion Solar Telescope (CAST). Search for an axion-like particle with these…

Micromegas is one of the detector technologies (along with the small Thin Gap Chambers) that has been chosen for precision tracking and triggering purposes of the ATLAS muon forward detectors in the view of LHC luminosity increase. To…

Instrumentation and Detectors · Physics 2015-06-17 Georgios Iakovidis

This article describes BabyIAXO, an intermediate experimental stage of the International Axion Observatory (IAXO), proposed to be sited at DESY. IAXO is a large-scale axion helioscope that will look for axions and axion-like particles…

Instrumentation and Detectors · Physics 2021-03-05 A. Abeln , K. Altenmüller , S. Arguedas Cuendis , E. Armengaud , D. Attié , S. Aune , S. Basso , L. Bergé , B. Biasuzzi , P. T. C. Borges De Sousa , P. Brun , N. Bykovskiy , D. Calvet , J. M. Carmona , J. F. Castel , S. Cebrián , V. Chernov , F. E. Christensen , M. M. Civitani , C. Cogollos , T. Dafní , A. Derbin , K. Desch , D. Díez , M. Dinter , B. Döbrich , I. Drachnev , A. Dudarev , L. Dumoulin , D. D. M. Ferreira , E. Ferrer-Ribas , I. Fleck , J. Galán , D. Gascón , L. Gastaldo , M. Giannotti , Y. Giomataris , A. Giuliani , S. Gninenko , J. Golm , N. Golubev , L. Hagge , J. Hahn , C. J. Hailey , D. Hengstler , P. L. Henriksen , T. Houdy , R. Iglesias-Marzoa , F. J. Iguaz , I. G. Irastorza , C. Iñiguez , K. Jakovcic , J. Kaminski , B. Kanoute , S. Karstensen , L. Kravchuk , B. Lakic , T. Lasserre , P. Laurent , O. Limousin , A. Lindner , M. Loidl , I. Lomskaya , G. López-Alegre , B. Lubsandorzhiev , K. Ludwig , G. Luzón , C. Malbrunot , C. Margalejo , A. Marin-Franch , S. Marnieros , F. Marutzky , J. Mauricio , Y. Menesguen , M. Mentink , S. Mertens , F. Mescia , J. Miralda-Escudé , H. Mirallas , J. P. Mols , V. Muratova , X. F. Navick , C. Nones , A. Notari , A. Nozik , L. Obis , C. Oriol , F. Orsini , A. Ortiz de Solórzano , S. Oster , H. P. Pais Da Silva , V. Pantuev , T. Papaevangelou , G. Pareschi , K. Perez , O. Pérez , E. Picatoste , M. J. Pivovaroff , D. V. Poda , J. Redondo , A. Ringwald , M. Rodrigues , F. Rueda-Teruel , S. Rueda-Teruel , E. Ruiz-Choliz , J. Ruz , E. O. Saemann , J. Salvado , T. Schiffer , S. Schmidt , U. Schneekloth , M. Schott , L. Segui , F. Tavecchio , H. H. J. ten Kate , I. Tkachev , S. Troitsky , D. Unger , E. Unzhakov , N. Ushakov , J. K. Vogel , D. Voronin , A. Weltman , U. Werthenbach , W. Wuensch , A. Yanes-Díaz

Hypothetical axion-like particles with a two-photon interaction would be produced in the Sun by the Primakoff process. In a laboratory magnetic field (``axion helioscope'') they would be transformed into X-rays with energies of a few keV.…

High Energy Physics - Experiment · Physics 2012-08-27 CAST Collaboration

Dark Matter searches have been ongoing for three decades; the lack of a positive discovery of the main candidate, the WIMP, after dedicated efforts, has put axions and axion-like-particles in the spotlight. The three main techniques…

Instrumentation and Methods for Astrophysics · Physics 2022-04-08 T. Dafni , J. Galan

Weakly Interacting Massive Particles (WIMPs) are one of the best motivated candidates to compose the Dark Matter of the Universe. The lack of experimental confirmation by direct detection experiments or collider searches has ruled out…

Instrumentation and Detectors · Physics 2025-07-04 Oscar Perez

We present the results of a study on the impact of particles of galactic (GCR) and solar origin for the X-ray Microcalorimeter Spectrometer (XMS) aboard an astronomical satellite flying in an orbit at the second Lagrangian point (L2). The…

Instrumentation and Methods for Astrophysics · Physics 2012-07-10 S. Lotti , E. Perinati , L. Natalucci , L. Piro , T. Mineo , L. Colasanti , C. Macculi

One of the three X-ray detectors of the CAST experiment searching for solar axions is a Time Projection Chamber (TPC) with a multi-wire proportional counter (MWPC) as a readout structure. Its design has been optimized to provide high…

In the last years, optical readout of Micromegas gaseous detectors has been achieved by implementing a Micromegas detector on a glass anode coupled to a CMOS camera. Effective X-ray radiography was demonstrated using integrated imaging…

We review the physics potential of a next generation search for solar axions: the International Axion Observatory (IAXO). Endowed with a sensitivity to discover axion-like particles (ALPs) with a coupling to photons as small as…

The CDMS-II experiment operates 19 germanium detectors with a mass of 250g each in a very low background environment. Originally designed for the search for Dark Matter the experiment can also detect solar axions by Primakoff conversion to…

Astrophysics · Physics 2019-08-13 T. Bruch

In the near future BabyIAXO will be the most powerful axion helioscope, relying on a custom-made magnet of two bores of 70 cm diameter and 10 m long, with a total available magnetic volume of more than 7 m$^3$. In this document, we propose…

Axions, if discovered, could serve as a powerful new messenger for studying astrophysical objects. In this study we show how the Sun's spatial and spectral "axion image" can be inverted to infer the radial dependence of solar properties in…

High Energy Physics - Phenomenology · Physics 2023-10-09 Sebastian Hoof , Joerg Jaeckel , Lennert J. Thormaehlen

The axion is a light pseudoscalar particle which suppresses CP-violating effects in strong interactions and also happens to be an excellent dark matter candidate. Axions constituting the dark matter halo of our galaxy may be detected by…