English

Ultracold Neutron Guide-Coating Facility at U.Winnipeg

Instrumentation and Detectors 2026-05-06 v3

Abstract

We report the construction and commissioning of a new ultracold neutron (UCN) guide-coating facility at the University of Winnipeg. The facility employs pulsed laser deposition (PLD) to produce diamond-like carbon (DLC) coatings on cylindrical UCN guides up to 1 m in length with a 200 mm outer diameter. DLC is a promising material for UCN transport and storage due to its high real component of the optical potential, low neutron absorption cross section, and low depolarization probabilities. First coating attempts on a full length aluminum UCN guide and matching blank flange were successfully coated with a carbon film with density of 2.3 g/cm3^3, corresponding to optical potentials of 200 neV, as measured by X-ray reflectometry (XRR). Coating thicknesses were measured to be 90 nm for the UCN guide and 180 nm for the flange with no evidence of delamination. The implementation of a plasma plume collimator and plasma feed back control via a time of flight in vacuum ion probe produced a film with an XRR measured density of 2.8 g/cm3^3, corresponding to an optical potential of 240 neV. This 80 nm thick film had poor adhesion to the aluminum tube substrate. These results establish a baseline for the coating facility. Ongoing and future work focuses on improving the diamond content of films and adhesion through plasma plume collimation, TOF ion probe feed back, and pre/post treatment methods with the goal of providing high quality DLC UCN guides for the TUCAN experiment at TRIUMF.

Keywords

Cite

@article{arxiv.2510.06289,
  title  = {Ultracold Neutron Guide-Coating Facility at U.Winnipeg},
  author = {T. Hepworth and A. Zahra and B. Algohi and R. de Vries and S. Pankratz and P. Switzer and T. Reimer and M. McCrea and J. W. Martin and R. Mammei and D. Anthony and L. Barrón-Palos and M. Bossé and M. P. Bradley and A. Brossard and T. Bui and J. Chak and R. Chiba and C. Davis and K. Drury and D. Fujimoto and R. Fujitani and M. Gericke and P. Giampa and C. Gibson and R. Golub and T. Higuchi and G. Ichikawa and I. Ide and S. Imajo and A. Jaison and B. Jamieson and M. Katotoka and S. Kawasaki and M. Kitaguchi and W. Klassen and E. Korkmaz and E. Korobkina and M. Lavvaf and T. Lindner and N. Lo and S. Longo and K. W. Madison and Y. Makida and J. Malcolm and J. Mammei and Z. Mao and C. Marshall and R. Matsumiya and E. Miller and M. Miller and K. Mishima and T. Mohammadi and T. Momose and M. Nalbandian and T. Okamura and R. Patni and R. Picker and K. Qiao and W. D. Ramsay and W. Rathnakela and D. Salazar and J. Sato and W. Schreyer and T. Shima and H. M. Shimizu and S. Sidhu and S. Stargardter and R. Stutters and I. Tanihata and Tushar and W. T. H. van Oers and N. Yazdandoost and Q. Ye and M. Zhao},
  journal= {arXiv preprint arXiv:2510.06289},
  year   = {2026}
}

Comments

18 pages

R2 v1 2026-07-01T06:22:16.815Z