Towards a new generation axion helioscope
Abstract
We study the feasibility of a new generation axion helioscope, the most ambitious and promising detector of solar axions to date. We show that large improvements in magnetic field volume, x-ray focusing optics and detector backgrounds are possible beyond those achieved in the CERN Axion Solar Telescope (CAST). For hadronic models, a sensitivity to the axion-photon coupling of GeV is conceivable, 1--1.5 orders of magnitude beyond the CAST sensitivity. If axions also couple to electrons, the Sun produces a larger flux for the same value of the Peccei-Quinn scale, allowing one to probe a broader class of models. Except for the axion dark matter searches, this experiment will be the most sensitive axion search ever, reaching or surpassing the stringent bounds from SN1987A and possibly testing the axion interpretation of anomalous white-dwarf cooling that predicts of a few meV. Beyond axions, this new instrument will probe entirely unexplored ranges of parameters for a large variety of axion-like particles (ALPs) and other novel excitations at the low-energy frontier of elementary particle physics.
Cite
@article{arxiv.1103.5334,
title = {Towards a new generation axion helioscope},
author = {I. G. Irastorza and F. T. Avignone and S. Caspi and J. M. Carmona and T. Dafni and M. Davenport and A. Dudarev and G. Fanourakis and E. Ferrer-Ribas and J. Galan and J. A. Garcia and T. Geralis and I. Giomataris and H. Gomez and D. H. H. Hoffmann and F. J. Iguaz and K. Jakovcic and M. Krcmar and B. Lakic and G. Luzon and M. Pivovaroff and T. Papaevangelou and G. Raffelt and J. Redondo and A. Rodriguez and S. Russenschuck and J. Ruz and I. Shilon and H. Ten Kate and A. Tomas and S. Troitsky and K. van Bibber and J. A. Villar and J. Vogel and L. Walckiers and K. Zioutas},
journal= {arXiv preprint arXiv:1103.5334},
year = {2015}
}
Comments
37 pages, 11 figures, accepted for publication in JCAP