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arXiv:1302.6283·v2·Solar and Stellar Astrophysics

CAST constraints on the axion-electron coupling

K. Barth🇨🇭 · A. Belov🇷🇺 · B. Beltran🇪🇸 · H. Brauninger🇩🇪 · J. M. Carmona🇪🇸 · J.I. Collar🇺🇸 · T. Dafni🇪🇸 · M. Davenport🇨🇭 · L. Di Lella🇨🇭 · C. Eleftheriadis🇬🇷 · J. Englhauser🇩🇪 · G. Fanourakis🇬🇷

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Abstract

In non-hadronic axion models, which have a tree-level axion-electron interaction, the Sun produces a strong axion flux by bremsstrahlung, Compton scattering, and axio-recombination, the "BCA processes." Based on a new calculation of this flux, including for the first time axio-recombination, we derive limits on the axion-electron Yukawa coupling g_ae and axion-photon interaction strength g_ag using the CAST phase-I data (vacuum phase). For m_a < 10 meV/c2 we find g_ag x g_ae< 8.1 x 10^-23 GeV^-1 at 95% CL. We stress that a next-generation axion helioscope such as the proposed IAXO could push this sensitivity into a range beyond stellar energy-loss limits and test the hypothesis that white-dwarf cooling is dominated by axion emission.

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