The production of 3H, 7Be, and 22Na by interactions of cosmic-ray particles with silicon can produce radioactive backgrounds in detectors used to search for rare events. Through controlled irradiation of silicon CCDs and wafers with a neutron beam that mimics the cosmic-ray neutron spectrum, followed by direct counting, we determined that the production rate from cosmic-ray neutrons at sea level is (112±24) atoms/(kg day) for 3H, (8.1±1.9) atoms/(kg day) for 7Be, and (43.0±7.1) atoms/(kg day) for 22Na. Complementing these results with the current best estimates of activation cross sections for cosmic-ray particles other than neutrons, we obtain a total sea-level cosmic-ray production rate of (124±24) atoms/(kg day) for 3H, (9.4±2.0) atoms/(kg day) for 7Be, and (49.6±7.3) atoms/(kg day) for 22Na. These measurements will help constrain background estimates and determine the maximum time that silicon-based detectors can remain unshielded during detector fabrication before cosmogenic backgrounds impact the sensitivity of next-generation rare-event searches.
Cite
@article{arxiv.2007.10584,
title = {Cosmogenic activation of silicon},
author = {R. Saldanha and R. Thomas and R. H. M. Tsang and A. E. Chavarria and R. Bunker and J. L. Burnett and S. R. Elliott and A. Matalon and P. Mitra and A. Piers and P. Privitera and K. Ramanathan and R. Smida},
journal= {arXiv preprint arXiv:2007.10584},
year = {2020}
}
Comments
21 pages, 16 figures, 10 tables. Accepted version of the article published in Physical Review D