Characterization of electroless nickel-phosphorus plating for ultracold-neutron storage
Abstract
Electroless nickel plating is an established industrial process that provides a robust and relatively low-cost coating suitable for transporting and storing ultracold neutrons (UCN). Using roughness measurements and UCN-storage experiments we characterized UCN guides made from polished aluminum or stainless-steel tubes plated by several vendors. All electroless nickel platings were similarly suited for UCN storage with an average loss probability per wall bounce of to for energies between 90 neV and 190 neV, or a ratio of imaginary to real Fermi potential of to . Measurements at different elevations indicate that the energy dependence of UCN losses is well described by the imaginary Fermi potential. Some special considerations are required to avoid an increase in surface roughness during the plating process and hence a reduction in UCN transmission. Increased roughness had only a minor impact on storage properties. Based on these findings we chose a vendor to plate the UCN-production vessel that will contain the superfluid-helium converter for the new TRIUMF UltraCold Advanced Neutron (TUCAN) source, achieving acceptable UCN-storage properties with .
Keywords
Cite
@article{arxiv.2208.05590,
title = {Characterization of electroless nickel-phosphorus plating for ultracold-neutron storage},
author = {H. Akatsuka and T. Andalib and B. Bell and J. Berean-Dutcher and N. Bernier and C. P. Bidinosti and C. Cude-Woods and S. A. Currie and C. A. Davis and B. Franke and R. Gaur and P. Giampa and S. Hansen-Romu and M. T. Hassan and K. Hatanaka and T. Higuchi and C. Gibson and G. Ichikawa and I. Ide and S. Imajo and T. M. Ito and B. Jamieson and S. Kawasaki and M. Kitaguchi and W. Klassen and E. Korkmaz and F. Kuchler and M. Lang and M. Lavvaf and T. Lindner and M. Makela and J. Mammei and R. Mammei and J. W. Martin and R. Matsumiya and E. Miller and K. Mishima and T. Momose and S. Morawetz and C. L. Morris and H. J. Ong and C. M. O'Shaughnessy and M. Pereira-Wilson and R. Picker and F. Piermaier and E. Pierre and W. Schreyer and S. Sidhu and D. Stang and V. Tiepo and S. Vanbergen and R. Wang and D. Wong and N. Yamamoto},
journal= {arXiv preprint arXiv:2208.05590},
year = {2023}
}
Comments
8 pages, 7 figures