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Search for solar bosonic dark matter annual modulation with COSINE-100

Authors :
Adhikari, G.
Carlin, N.
Choi, J. J.
Choi, S.
Ezeribe, A. C.
França, L. E.
Ha, C.
Hahn, I. S.
Hollick, S. J.
Jeon, E. J.
Jo, J. H.
Joo, H. W.
Kang, W. G.
Kauer, M.
Kim, B. H.
Kim, H. J.
Kim, J.
Kim, K. W.
Kim, S. H.
Kim, S. K.
Kim, W. K.
Kim, Y. D.
Kim, Y. H.
Ko, Y. J.
Lee, D. H.
Lee, E. K.
Lee, H.
Lee, H. S.
Lee, H. Y.
Lee, I. S.
Lee, J.
Lee, J. Y.
Lee, M. H.
Lee, S. H.
Lee, S. M.
Lee, Y. J.
Leonard, D. S.
Luan, N. T.
Manzato, B. B.
Maruyama, R. H.
Neal, R. J.
Nikkel, J. A.
Olsen, S. L.
Park, B. J.
Park, H. K.
Park, H. S.
Park, K. S.
Park, S. D.
Pitta, R. L. C.
Prihtiadi, H.
Ra, S. J.
Rott, C.
Shin, K. A.
Cavalcante, D. F. F. S.
Scarff, A.
Spooner, N. J. C.
Thompson, W. G.
Yang, L.
Yu, G. H.
Adhikari, G.
Carlin, N.
Choi, J. J.
Choi, S.
Ezeribe, A. C.
França, L. E.
Ha, C.
Hahn, I. S.
Hollick, S. J.
Jeon, E. J.
Jo, J. H.
Joo, H. W.
Kang, W. G.
Kauer, M.
Kim, B. H.
Kim, H. J.
Kim, J.
Kim, K. W.
Kim, S. H.
Kim, S. K.
Kim, W. K.
Kim, Y. D.
Kim, Y. H.
Ko, Y. J.
Lee, D. H.
Lee, E. K.
Lee, H.
Lee, H. S.
Lee, H. Y.
Lee, I. S.
Lee, J.
Lee, J. Y.
Lee, M. H.
Lee, S. H.
Lee, S. M.
Lee, Y. J.
Leonard, D. S.
Luan, N. T.
Manzato, B. B.
Maruyama, R. H.
Neal, R. J.
Nikkel, J. A.
Olsen, S. L.
Park, B. J.
Park, H. K.
Park, H. S.
Park, K. S.
Park, S. D.
Pitta, R. L. C.
Prihtiadi, H.
Ra, S. J.
Rott, C.
Shin, K. A.
Cavalcante, D. F. F. S.
Scarff, A.
Spooner, N. J. C.
Thompson, W. G.
Yang, L.
Yu, G. H.
Publication Year :
2023

Abstract

We present results from a search for solar bosonic dark matter using the annual modulation method with the COSINE-100 experiment. The results were interpreted considering three dark sector bosons models: solar dark photon; DFSZ and KSVZ solar axion; and Kaluza-Klein solar axion. No modulation signal that is compatible with the expected from the models was found from a data-set of 2.82 yr, using 61.3 kg of NaI(Tl) crystals. Therefore, we set a 90$\%$ confidence level upper limits for each of the three models studied. For the solar dark photon model, the most stringent mixing parameter upper limit is $1.61 \times 10^{-14}$ for dark photons with a mass of 215 eV. For the DFSZ and KSVZ solar axion, and the Kaluza-Klein axion models, the upper limits exclude axion-electron couplings, $g_{ae}$, above $1.61 \times 10^{-11}$ for axion mass below 0.2 keV; and axion-photon couplings, $g_{a\gamma\gamma}$, above $1.83 \times 10^{-11}$ GeV$^{-1}$ for an axion number density of $4.07 \times 10^{13}$ cm$^{-3}$. This is the first experimental search for solar dark photons and DFSZ and KSVZ solar axions using the annual modulation method. The lower background, higher light yield and reduced threshold of NaI(Tl) crystals of the future COSINE-200 experiment are expected to enhance the sensitivity of the analysis shown in this paper. We show the sensitivities for the three models studied, considering the same search method with COSINE-200.<br />Comment: 13 pages, 16 figures

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1381533251
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1103.PhysRevD.107.122004