63 research outputs found
Experimental investigation of the low molecular weight fluoropolymer for the ultracold neutrons storage
The experimental setup for examining the low-molecular-weight fluoropolymer
CF(CF-O-CF-O-(CFCF, which is a
promising coating material for the walls of storage chambers for ultracold
neutrons, is described. The results are detailed. The measurement data are
interpreted in the model of a multilayer complex quantum-mechanical potential
of the chamber walls.Comment: Corrected version of the paper published in Phys. of Part. and Nucl
Lett., 15 (No.5) (2018) 54
Calculation of the ultracold neutron upscattering loss probability in fluid walled storage bottles using experimental measurements of the thermomechanical properties of Fomblin
We present experimental measurements of the properties of a liquid "Fomblin"
surface obtained by the quasielastic scattering of laser light. The properties
include the surface tension and viscosity as a function of temperature. The
results are compared to the measurements of the bulk fluid properties.
We then calculate the upscattering rate of ultracold neutrons (UCN) from
thermally excited surface capillary waves on the liquid surface and compare the
results to experimental measurements of the UCN lifetime in Fomblin
fluid-walled UCN storage bottles, and show that the excess loss rate for UCN
energies near the Fomblin potential can be explained. The rapid temperature
dependence of the Fomblin storage lifetime is explained by our analysis.Comment: 25 pages, 13 figures; 2nd version corrects several error
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