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CERN Document Server Sök i 2,051 journaler efter:  1 - 10nästaslut  gå till journal: Sökningen tog 0.45 sekunder. 
1.
Design of the BabyIAXO Superconducting Detector Magnet / Bykovskiy, Nikolay (CERN) ; Dudarev, Alexey (CERN) ; da Silva, Helder Pais (CERN) ; de Sousa, Patricia Borges (CERN) ; ten Kate, Herman H J (CERN)
Searching for axion like particles is one of the top priorities in particle physics. Using helioscopes is a promising technology to detect solar axions. [...]
2020 - 5 p. - Published in : IEEE Trans. Appl. Supercond. 30 (2020) 4500505
2.
Superconducting Detector Magnet for BabyIAXO / Bykovskiy, Nikolay (CERN) ; Dudarev, Alexey (CERN) ; Pais Da Silva, Helder (CERN) ; de Sousa, Patricia Borges (CERN) ; Mentink, Matthias (CERN) ; Ten Kate, Herman H J (CERN)
BabyIAXO, a 20 m-long telescope aiming at the search for solar axions, is planned since late 2017 as a smaller scale but fully functional demonstrator of the International Axion Observatory (IAXO). It essentially comprises a superconducting magnet, optics and X-ray detectors, installed on a Sun-tracking drive system providing rotation and tilting of the detector. [...]
2021 - 5 p. - Published in : IEEE Trans. Appl. Supercond. 31 (2021) 4500305
3.
Quench protection of the BabyIAXO magnet / Bykovskiy, N (CERN) ; Dudarev, A (CERN) ; Silva, H (CERN) ; ten Kate, H H J (CERN)
BabyIAXO, a 20 m-long twin-bore helioscope aiming for search of axion like particles, is currently in the engineering design phase and its construction is to be completed within the next 4 years. In addition to X-ray detectors and focusing optics, the system is equipped with a 50 MJ magnet with a common coil layout, containing two 10 m-long NbTi flat racetrack coils cooled by a group of cryocoolers. [...]
IOP, 2020 - 10 p. - Published in : J. Phys.: Conf. Ser. 1559 (2020) 012127 Fulltext: PDF;
In : 14th European Conference on Applied Superconductivity, Glasgow, United Kingdom, 1 - 5 Sep 2019, pp.012127
4.
Thermal analysis and cryogenics of the Baby-IAXO magnet / Silva, H F P (CERN) ; Dudarev, A (CERN) ; Bykovskiy, N (CERN) ; de Sousa, P Borges (CERN) ; ten Kate, H H J (CERN)
Baby-IAXO is a new helioscope, a demonstration version of the proposed full-size IAXO, the International Axions Observatory. It is currently under design and once installed it will search via the Primakoff effect for axions or axion-like particles (ALPs) originating in the Sun. [...]
IOP, 2020 - 8 p. - Published in : IOP Conf. Ser. Mater. Sci. Eng. 755 (2020) 012132 External link: Published fulltext
In : Conference on Cryogenic Engineering and on International Cryogenic Materials, Hartford, Connecticut, 21 - 25 Jul 2019, pp.012132
5.
Mechanical Design and Analysis of the Baby-IAXO Magnet Cold Mass, Cryostat and Support System / Pais Da Silva, Helder (CERN) ; Bykovskiy, Nikolay (CERN) ; Borges de Sousa, Patricia (CERN) ; Dudarev, Alexey (CERN) ; Ten Kate, Herman H. J. (CERN)
According to the so-called Primakoff effect, axions and axion-like particles can transform into photons in the presence of a strong magnetic field. To continue the search for these hypothetical particles, a new helioscope called the International Axion Observatory IAXO, and its subscale but fully functional demonstrator Baby-IAXO, are being designed. [...]
2020 - 6 p. - Published in : IEEE Trans. Appl. Supercond. 30 (2020) 4500206
6.
A Proposal for a Low-Frequency Axion Search in the 1–2 μ$\umu$ eV Range and Below with the BabyIAXO Magnet / Ahyoune, Saiyd (ICC, Barcelona U.) ; Melcón, Alejandro Álvarez (Cartagena Politecnica U.) ; Cuendis, Sergio Arguedas (ICC, Barcelona U.) ; Calatroni, Sergio (CERN) ; Cogollos, Cristian (Munich, Max Planck Inst.) ; Devlin, Jack (Imperial Coll., London) ; Díaz-Morcillo, Alejandro (Cartagena Politecnica U.) ; Díez-Ibáñez, David (U. Zaragoza (main)) ; Döbrich, Babette (Munich, Max Planck Inst.) ; Galindo, Javier (U. Zaragoza (main)) et al.
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 and describe the implementation of low-frequency axion haloscope setups suitable for operation inside the BabyIAXO magnet. [...]
arXiv:2306.17243.- 2023-12-01 - Published in : Ann. Phys. (Leipzig) 535 (2023) 2300326 Fulltext: document - PDF; 2306.17243 - PDF;
7.
Thermodynamic Design of a Cryostat for a Radiofrequency Cavity Detector in BabyIAXO in Search of Dark Matter / Siodlaczek, Marc
Despite compelling evidence, dark matter (DM) has still not been directly detected yet [...]
CERN-THESIS-2022-016 - 66 p.

8.
Prospects for HFGW searches with the axion experiments ALPS II and BabyIAXO / Lindner, Axel (speaker)
At DESY in Hamburg, axions search experiments not relying on the dark matter paradigm are taking data (ALPS II) or have good prospects to start construction soon (BabyIAXO). Due to the similarity of axion-photon and GW-photon conversions in background magnetic fields, both experiments will also be sensitive to high frequency gravitational waves (HF-GW). [...]
2023 - 1625. TH institutes; Ultra-high frequency gravitational waves: where to next ? External links: Talk details; Event details In : Ultra-high frequency gravitational waves: where to next ?
9.
Ultra-Thin Solenoid and Cryostat Development for Novel Detector Magnets / Ilardi, Veronica (Twente U., Enschede) ; Silva, Hélder F P (CERN) ; Kulenkampff, Tobias (Vienna, Tech. U.) ; Dudarev, Alexey (CERN) ; de Sousa, Patricia Borges (CERN) ; Mentink, Matthias (CERN) ; Dhalle, Marc (Twente U., Enschede) ; Kate, Herman H J Ten (Twente U., Enschede)
In the scope of the Future Circular electron positron Collider study (FCC-ee), the IDEA detector is developed. It comprises a superconducting solenoid with free bore of 4 m, 6 m long and a central magnetic field of 2 T. [...]
2021 - 5 p. - Published in : IEEE Trans. Appl. Supercond. 31 (2021) 4500205
10.
Next Generation Search for Axion and ALP Dark Matter with the International Axion Observatory / Ruz, J (LLNL, Livermore) ; Vogel, J K (LLNL, Livermore) ; Armengaud, E (IRFU, Saclay) ; Attie, D (IRFU, Saclay) ; Basso, S (Brera Observ.) ; Brun, P (IRFU, Saclay) ; Bykovskiy, N (CERN) ; Carmona, J M (Zaragoza U.) ; Castel, J F (Zaragoza U.) ; Cebrián, S (Zaragoza U.) et al.
More than 80 years after the postulation of dark matter, its nature remains one of the fundamental questions in cosmology. Axions are currently one of the leading candidates for the hypothetical, non-baryonic dark matter that is expected to account for about 25% of the energy density of the Universe. [...]
2019 - 5 p. - Published in : 10.1109/NSSMIC.2018.8824640
In : 2018 IEEE Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC 2018), Sydney, Australia, 10 - 17 Nov 2018, pp.8824640

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