Cosmogenic Neutron Production in Water at SNO+
Abstract
Accurate measurement of the cosmogenic muon-induced neutron yield is crucial for constraining a significant background in a wide range of low-energy physics searches. Although previous underground experiments have measured this yield across various cosmogenic muon energies, SNO+ is uniquely positioned due to its exposure to one of the highest average cosmogenic muon energies at . Using ultra-pure water, we have determined a neutron yield of at SNO+. Comparison with simulations demonstrates clear agreement with the FLUKA neutron production model, highlighting discrepancies with the widely used GEANT4 model. Furthermore, this measurement reveals a lower cosmogenic neutron yield than that observed by the SNO experiment, which used heavy water under identical muon flux conditions. This result provides new evidence that nuclear structure and target material composition significantly influence neutron production by cosmogenic muons, offering fresh insight with important implications for the design and background modelling of future underground experiments.
Cite
@article{arxiv.2511.04600,
title = {Cosmogenic Neutron Production in Water at SNO+},
author = {SNO+ Collaboration and : and M. Abreu and A. Allega and M. R. Anderson and S. Andringa and D. M. Asner and D. J. Auty and A. Bacon and T. Baltazar and F. Barão and N. Barros and R. Bayes and C. Baylis and E. W. Beier and A. Bialek and S. D. Biller and E. Caden and E. J. Callaghan and M. Chen and S. Cheng and B. Cleveland and D. Cookman and J. Corning and S. DeGraw and R. Dehghani and J. Deloye and M. M. Depatie and C. Dima and J. Dittmer and K. H. Dixon and M. S. Esmaeilian and E. Falk and N. Fatemighomi and R. Ford and S. Gadamsetty and A. Gaur and D. Gooding and C. Grant and J. Grove and S. Hall and A. L. Hallin and D. Hallman and M. R. Hebert and W. J. Heintzelman and R. L. Helmer and C. Hewitt and B. Hreljac and P. Huang and R. Hunt-Stokes and A. S. Inácio and C. J. Jillings and S. Kaluzienski and T. Kaptanoglu and J. Kladnik and J. R. Klein and L. L. Kormos and B. Krar and C. Kraus and C. B. Krauss and T. Kroupová and C. Lake and L. Lebanowski and C. Lefebvre and B. Liggins and V. Lozza and M. Luo and S. Maguire and A. Maio and S. Manecki and J. Maneira and R. D. Martin and N. McCauley and A. B. McDonald and G. Milton and D. Morris and M. Mubasher and S. Naugle and L. J. Nolan and H. M. O'Keeffe and G. D. Orebi Gann and S. Ouyang and J. Page and S. Pal and K. Paleshi and W. Parker and L. J. Pickard and R. C. Pitelka and B. Quenallata and P. Ravi and A. Reichold and S. Riccetto and J. Rose and R. Rosero and J. Shen and J. Simms and P. Skensved and M. Smiley and M. I. Stringer and R. Tafirout and B. Tam and J. Tseng and E. Vázquez-Jáuregui and C. J. Virtue and F. Wang and M. Ward and J. R. Wilson and J. D. Wilson and A. Wright and S. Yang and Z. Ye and M. Yeh and S. Yu and Y. Zhang and K. Zuber},
journal= {arXiv preprint arXiv:2511.04600},
year = {2026}
}