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Conceptual design of BabyIAXO, the intermediate stage towards the International Axion Observatory

Authors :
The IAXO collaboration
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. Jakovčić
J. Kaminski
B. Kanoute
S. Karstensen
L. Kravchuk
B. Lakić
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
Source :
Journal of High Energy Physics, Vol 2021, Iss 5, Pp 1-80 (2021)
Publication Year :
2021
Publisher :
SpringerOpen, 2021.

Abstract

Abstract 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 (ALPs), produced in the Sun, with unprecedented sensitivity. BabyIAXO is conceived to test all IAXO subsystems (magnet, optics and detectors) at a relevant scale for the final system and thus serve as prototype for IAXO, but at the same time as a fully-fledged helioscope with relevant physics reach itself, and with potential for discovery. The BabyIAXO magnet will feature two 10 m long, 70 cm diameter bores, and will host two detection lines (optics and detector) of dimensions similar to the final ones foreseen for IAXO. BabyIAXO will detect or reject solar axions or ALPs with axion-photon couplings down to g aγ ∼ 1.5 × 10 −11 GeV −1, and masses up to m a ∼ 0.25 eV. BabyIAXO will offer additional opportunities for axion research in view of IAXO, like the development of precision x-ray detectors to identify particular spectral features in the solar axion spectrum, and the implementation of radiofrequency-cavity-based axion dark matter setups.

Details

Language :
English
ISSN :
10298479
Volume :
2021
Issue :
5
Database :
Directory of Open Access Journals
Journal :
Journal of High Energy Physics
Publication Type :
Academic Journal
Accession number :
edsdoj.98cfe5d0dc02483aa3cc967ba9034aa0
Document Type :
article
Full Text :
https://doi.org/10.1007/JHEP05(2021)137