Search for a sub-eV sterile neutrino using Daya Bay's full dataset

This Letter presents results of a search for the mixing of a sub-eV sterile neutrino with three active neutrinos based on the full data sample of the Daya Bay Reactor Neutrino Experiment, collected during 3158 days of detector operation, which contains $5.55 \times 10^{6}$ reactor \anue candidates i...

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Hauptverfasser: An, F. P, Balantekin, A. B, Bishai, M, Blyth, S, Chen, H. S, Chen, H. Y, Chen, S. M, Chen, Z. Y, Cheng, Z. K, Cherwinka, J. J, Cummings, J. P, Dalager, O, Deng, F. S, Ding, X. Y, Dohnal, T, Dugas, K. V, Duyang, H. Y, Dwyer, D. A, Gonchar, M, Guo, J. Y, Guo, L, Hans, S, He, M, Hu, J. R, Hu, T, Huang, J. H, Huang, X. T, Ji, X. L, Kettell, S. H, Lee, J, Lei, R. T, Li, H. L, Li, J. J, Li, R. H, Li, W. D, Li, Y. F, Liang, H, Lin, S, Ling, J. J, Link, J. M, Littenberg, L, Liu, J. C, Liu, J. X, Lu, C, Lu, H. Q, Luk, K. B, Ma, B. Z, Ma, Y. Q, Marshall, C, McDonald, K. T, Meng, Y, Nguyen, T. M. T, Patton, S, Pun, C. S. J, Qian, X, Raper, N, Rosero, R, Steiner, H, Sun, J. L, Tmej, T, Tull, C. E, Viren, B, Wang, N. Y, Wang, R. G, Wang, W, Wang, X, Wang, Y. F, Wang, Z. M, Wei, W, Whisnant, K, White, C. G, Wong, H. L. H, Wu, Q, Wu, W. J, Xie, Z. Q, Xing, Z. Z, Xu, H. K, Xu, J. L, Xu, T, Xue, T, Yang, C. G, Yang, Y. Z, Yao, H. F, Ye, M, Yeh, M, Young, B. L, Yu, H. Z, Yu, Z. Y, Yue, B. B, Zeng, S, Zeng, Y, Zhang, C, Zhang, F. Y, Zhang, H. H, Zhang, J. W, Zhang, Q. M, Zhang, S. Q, Zhang, X. T, Zhang, Z. P, Zhou, L
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Zusammenfassung:This Letter presents results of a search for the mixing of a sub-eV sterile neutrino with three active neutrinos based on the full data sample of the Daya Bay Reactor Neutrino Experiment, collected during 3158 days of detector operation, which contains $5.55 \times 10^{6}$ reactor \anue candidates identified as inverse beta-decay interactions followed by neutron-capture on gadolinium. The analysis benefits from a doubling of the statistics of our previous result and from improvements of several important systematic uncertainties. No significant oscillation due to mixing of a sub-eV sterile neutrino with active neutrinos was found. Exclusion limits are set by both Feldman-Cousins and CLs methods. Light sterile neutrino mixing with $\sin^2 2\theta_{14} \gtrsim 0.01$ can be excluded at 95\% confidence level in the region of $0.01$ eV$^2 \lesssim |\Delta m^{2}_{41}| \lesssim 0.1 $ eV$^2$. This result represents the world-leading constraints in the region of $2 \times 10^{-4}$ eV$^2 \lesssim |\Delta m^{2}_{41}| \lesssim 0.2 $ eV$^2$.
DOI:10.48550/arxiv.2404.01687