Second generation degrader foil for the CARIBU project

The Californium Rare Ion Breeder Upgrade (CARIBU) project utilizes 252Cf to provide beams of neutron-rich nuclides with intensities not currently available at other facilities. The electroplated 252Cf source is positioned inside a large helium gas catcher, where the ejected fission fragments lose th...

Full description

Bibliographic Details
Main Authors: Gott Matthew, Greene John, DiGiovine Brad, Savard Guy, Zabransky Bruce
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:EPJ Web of Conferences
Online Access:https://www.epj-conferences.org/articles/epjconf/pdf/2020/05/epjconf_intds2018_06002.pdf
Description
Summary:The Californium Rare Ion Breeder Upgrade (CARIBU) project utilizes 252Cf to provide beams of neutron-rich nuclides with intensities not currently available at other facilities. The electroplated 252Cf source is positioned inside a large helium gas catcher, where the ejected fission fragments lose their energy and are slowed. Prior to entering this gas catcher, the ions first pass through a gold cover foil to contain self-sputtering recoil emissions and then through an aluminium degrader foil, where much of their residual energy is reduced. In the past due to production limitations, a less than ideal cylindrical shaped degrader was utilized. This resulted in non-uniform energy loss as the ions passed through the degrader. With the advent of 3D printing, a new hemispherical degrader was prepared to enable a more uniform energy loss. The design, production, and assembly will be discussed.
ISSN:2100-014X