arXiv · 2308.16536
Search for a neutron dark decay in $^6$He
Abstract
Neutron dark decays have been suggested as a solution to the discrepancy between bottle and beam experiments, providing a dark matter candidate that can be searched for in halo nuclei. The free neutron in the final state following the decay of $^6$He into $^4$He $+$ $n$ + $\chi$ provides an exceptionally clean detection signature when combined with a high efficiency neutron detector. Using a high-intensity $^6$He$^+$ beam at GANIL, a search for a coincident neutron signal resulted in an upper limit on a dark decay branching ratio of Br$_\chi \leq 4.0\times10^{-10}$ (95\% C.L.). Using the dark neutron decay model proposed originally by Fornal and Grinstein, we translate this into an upper bound on a dark neutron branching ratio of $\mathcal{O}(10^{-5})$, improving over global constraints by one to several orders of magnitude depending on $m_\chi$.
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M. Le Joubioux, H. Savajols, W. Mittig, X. Fléchard, L. Hayen, Yu. E. Penionzhkevich, D. Ackermann, C. Borcea, L. Caceres, P. Delahaye, F. Didierjean, S. Franchoo, A. Grillet, B. Jacquot, M. Lebois, X. Ledoux, N. Lecesne, E. Liénard, S. Lukyanov, O. Naviliat-Cuncic, J. Piot, A. Singh, V. Smirnov, C. Stodel, D. Testov, J. C. Thomas, D. Verney. 2023-08-31. Search for a neutron dark decay in $^6$He. https://doi.org/10.1103/physrevlett.132.132501
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