New Constraints on Axion-Like Particles with the NEON Detector at a Nuclear Reactor
arXiv:2406.06117 · doi:10.1103/PhysRevLett.134.201002
Abstract
We report new constraints on axion-like particles (ALPs) using data from the NEON experiment, which features a 16.7 kg of NaI(Tl) target located 23.7 meters from a 2.8 GW thermal power nuclear reactor. Analyzing a total exposure of 3063 kgdays, with 1596 kgdays during reactor-on and 1467 kgdays during reactor-off periods, we compared energy spectra to search for ALP-induced signals. No significant signal was observed, enabling us to set exclusion limits at the 95\% confidence level. These limits probe previously unexplored regions of the ALP parameter space, particularly for axion mass () near MeV/c. For ALP-photon coupling (), limits reach as low as 6.24 10 GeV at = 3.0 MeV/c, while for ALP-electron coupling (), limits reach 4.95 10 at = 1.02 MeV/c. This work demonstrates the potential for future reactor experiments to probe unexplored ALP parameter space.
11 pages, 3 figures (main text), 6 figures (Appendix)
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