A boron-coated CCD camera for direct detection of Ultracold Neutrons (UCN)
Abstract
A new boron-coated CCD camera is described for direct detection of ultracold neutrons (UCN) through the capture reactions B (n,0)Li (6%) and B(n,1)Li (94%). The experiments, which extend earlier works using a boron-coated ZnS:Ag scintillator, are based on direct detections of the neutron-capture byproducts in silicon. The high position resolution, energy resolution and particle ID performance of a scientific CCD allows for observation and identification of all the byproducts , Li and (electron recoils). A signal-to-noise improvement on the order of 10 over the indirect method has been achieved. Sub-pixel position resolution of a few microns is demonstrated. The technology can also be used to build UCN detectors with an area on the order of 1 m. The combination of micrometer scale spatial resolution, few electrons ionization thresholds and large area paves the way to new research avenues including quantum physics of UCN and high-resolution neutron imaging and spectroscopy.
Keywords
Cite
@article{arxiv.1903.01335,
title = {A boron-coated CCD camera for direct detection of Ultracold Neutrons (UCN)},
author = {K. Kuk and C. Cude-Woods and C. R. Chavez and J. H. Choi and J. Estrada and M. Hoffbauer and M. Makela and P. Merkel and C. L. Morris and E. Ramberg and Z. Wang and T. Bailey and M. Blatnik and E. R. Adamek and L. J. Broussard and M. A. -P. Brown and N. B. Callahan and S. M. Clayton and S. A. Currie and X. Ding and D. Dinger and B. Filippone and E. M. Fries and P. Geltenbort and E. George and F. Gonzalez and K. P. Hickerson and K. Hoffman and A. T. Holley and T. M. Ito and S. W. T. MacDonald and C. -Y. Liu and C. O'Shaughnessy and R. W. Pattie, and D. G. Phillips and B. Plaster and D. J. Salvat and A. Saunders and S. Seestrom and E. I. Sharapov and S. K. L. Sjue and V. Su and X. Sun and Z. Tang and P. L. Walstrom and W. Wei and J. W. Wexler and T. L. Womack and A. R. Young and B. A. Zeck and UCN collaboration},
journal= {arXiv preprint arXiv:1903.01335},
year = {2023}
}
Comments
10 pages, 8 figures