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Constraints on the axion-electron coupling for solar axions produced by Compton process and bremsstrahlung

Published 12 Jan 2011 in hep-ex, astro-ph.SR, and hep-ph | (1101.2290v1)

Abstract: The search for solar axions produced by Compton ($\gamma+e-\rightarrow e-+A$) and bremsstrahlung-like ($e-+Z \rightarrow Z+e-+A$) processes has been performed. The axion flux in the both cases depends on the axion-electron coupling constant. The resonant excitation of low-lying nuclear level of ${169}\rm{Tm}$ was looked for: $A+{169}$Tm $\rightarrow {169}$Tm$*$ $\rightarrow {169}$Tm $+ \gamma$ (8.41 keV). The Si(Li) detector and ${169}$Tm target installed inside the low-background setup were used to detect 8.41 keV $\gamma$-rays. As a result, a new model independent restriction on the axion-electron and the axion-nucleon couplings was obtained: $g_{Ae}\times|g0_{AN}+ g3_{AN}|\leq 2.1\times10{-14}$. In model of hadronic axion this restriction corresponds to the upper limit on the axion-electron coupling and on the axion mass $g_{Ae}\times m_A\leq3.1\times10{-7}$ eV (90% c.l.). The limits on axion mass are $m_A\leq$ 105 eV and $m_A\leq$ 1.3 keV for DFSZ- and KSVZ-axion models, correspondingly (90% c.l.).

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