Title of article
Ultra cold neutron production by multiphonon processes in superfluid helium under pressure
Author/Authors
Schmidt-Wellenburg، نويسنده , , P. and Andersen، نويسنده , , K.H. and Zimmer، نويسنده , , O.، نويسنده ,
Pages
4
From page
259
To page
262
Abstract
Cold neutrons are converted to ultra cold neutrons (UCN) by the excitation of a single phonon or multiphonons in superfluid helium. The dynamic scattering function S ( q , ℏ ω ) of the superfluid helium strongly depends on pressure, leading to a pressure-dependent differential UCN production rate. A phenomenological expression for the multiphonon part of the scattering function s ( λ ) describing UCN production has been derived from inelastic neutron scattering data. When combined with the production rate from single phonon processes this allows us to calculate the UCN production for any incident neutron flux. For calculations of the UCN production from single phonon processes we propose to use the values S * = 0.118 ( 8 ) at saturated vapour pressure and S * = 0.066 ( 6 ) at 20 bar. As an example we will calculate the expected UCN production rate at the cold neutron beam for fundamental physics PF1b at the Institut Laue Langevin. We conclude that UCN production in superfluid helium under pressure is not attractive.
Keywords
Helium under pressure , Superfluid helium , Ultracold neutron production
Journal title
Astroparticle Physics
Record number
1991312
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