English

First ultracold neutrons produced at TRIUMF

Instrumentation and Detectors 2019-03-06 v3 Nuclear Experiment

Abstract

We installed a source for ultracold neutrons at a new, dedicated spallation target at TRIUMF. The source was originally developed in Japan and uses a superfluid-helium converter cooled to 0.9\,K. During an extensive test campaign in November 2017, we extracted up to 325000 ultracold neutrons after a one-minute irradiation of the target, over three times more than previously achieved with this source. The corresponding ultracold-neutron density in the whole production and guide volume is 5.3\,cm3^{-3}. The storage lifetime of ultracold neutrons in the source was initially 37\,s and dropped to 24\,s during the eighteen days of operation. During continuous irradiation of the spallation target, we were able to detect a sustained ultracold-neutron rate of up to 1500\,s1^{-1}. Simulations of UCN production, UCN transport, temperature-dependent UCN yield, and temperature-dependent storage lifetime show excellent agreement with the experimental data and confirm that the ultracold-neutron-upscattering rate in superfluid helium is proportional to T7T^7.

Keywords

Cite

@article{arxiv.1809.04071,
  title  = {First ultracold neutrons produced at TRIUMF},
  author = {S. Ahmed and E. Altiere and T. Andalib and B. Bell and C. P. Bidinosti and E. Cudmore and M. Das and C. A. Davis and B. Franke and M. Gericke and P. Giampa and P. Gnyp and S. Hansen-Romu and K. Hatanaka and T. Hayamizu and B. Jamieson and D. Jones and S. Kawasaki and T. Kikawa and M. Kitaguchi and W. Klassen and A. Konaka and E. Korkmaz and F. Kuchler and M. Lang and L. Lee and T. Lindner and K. W. Madison and Y. Makida and J. Mammei and R. Mammei and J. W. Martin and R. Matsumiya and E. Miller and K. Mishima and T. Momose and T. Okamura and S. Page and R. Picker and E. Pierre and W. D. Ramsay and L. Rebenitsch and F. Rehm and W. Schreyer and H. M. Shimizu and S. Sidhu and A. Sikora and J. Smith and I. Tanihata and B. Thorsteinson and S. Vanbergen and W. T. H. van Oers and Y. X. Watanabe},
  journal= {arXiv preprint arXiv:1809.04071},
  year   = {2019}
}

Comments

8 pages, 10 figures

R2 v1 2026-06-23T04:02:52.362Z