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  New limits on the resonant absorption of solar axions obtained with a $^\mathbf{169}$Tm-containing cryogenic detector

Abdelhameed, A., Bakhlanov, S., Bauer, P., Bento, A., Bertoldo, E., Canonica, L., et al. (2020). New limits on the resonant absorption of solar axions obtained with a $^\mathbf{169}$Tm-containing cryogenic detector. European Physical Journal C, 80, 376. doi:10.1140/epjc/s10052-020-7943-5.

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Abdelhameed, A.H.1, Author
Bakhlanov, S.V.1, Author
Bauer, P.1, Author
Bento, A.1, Author
Bertoldo, E.1, Author
Canonica, L.1, Author
Derbin, A.V.1, Author
Drachnev, I.S.1, Author
Ferreiro Iachellini, N.1, Author
Fuchs, D.1, Author
Hauff, D.1, Author
Laubenstein, M.1, Author
Lis, D.A.1, Author
Lomskaya, I.S.1, Author
Mancuso, M.1, Author
Muratova, V.N.1, Author
Nagorny, S.1, Author
Nisi, S.1, Author
Petricca, F.1, Author
Proebst, F.1, Author
Rothe, J.1, AuthorRyabchenkov, V.V.1, AuthorSarkisov, S.E.1, AuthorSemenov, D.A.1, AuthorSubbotin, K.A.1, AuthorTrushin, M .V.1, AuthorUnzhakov, E.V.1, AuthorZharikov, E.V.1, Author more..
Affiliations:
1Max Planck Institute for Physics, Max Planck Society and Cooperation Partners, ou_2253650              

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Free keywords: Astroparticle Physics
 Abstract: A search for resonant absorption of solar axions by $^{169}\mathrm{Tm}$ nuclei was carried out. A newly developed approach involving low-background cryogenic bolometer based on $\mathrm{Tm}_{3} \mathrm{Al}_{5} \mathrm{O}_{12}$ crystal was used that allowed for significant improvement of sensitivity in comparison with previous $^{169}\mathrm{Tm}$ based experiments. The measurements performed with \unit[$8.18$]{g} crystal during \unit[$6.6$]{days} exposure yielded the following limits on axion couplings: $|g_{A\gamma} (g_{AN}^0 + g_{AN}^3) \leq \unit[1.44 \times 10^{-14}]{GeV^{-1}}$ and $|g_{Ae} (g_{AN}^0 + g_{AN}^3) \leq 2.81 \times 10^{-16}$.

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 Dates: 2020
 Publication Status: Issued
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Title: European Physical Journal C
  Abbreviation : Eur.Phys.J.C
Source Genre: Journal
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Pages: - Volume / Issue: 80 Sequence Number: - Start / End Page: 376 Identifier: -