• DocumentCode
    1033148
  • Title

    Preparation of thin-film neutron converter foils for imaging detectors

  • Author

    Veith, Gabriel M. ; Dudney, Nancy J.

  • Author_Institution
    Oak Ridge Nat. Lab., TN, USA
  • Volume
    51
  • Issue
    3
  • fYear
    2004
  • fDate
    6/1/2004 12:00:00 AM
  • Firstpage
    1034
  • Lastpage
    1038
  • Abstract
    With the pending delivery of the new Spallation Neutron Source at Oak Ridge National Laboratory, a new generation of highly efficient, position sensitive neutron detectors needs to be developed. One promising prospect for detector development has been the neutron imaging detector consisting of a conversion foil, which produce amongst other things α and γ particles from incident neutrons, and a position sensitive charge particle detector. In order to understand the materials chemistry between layered converters as well as to maximize the production and transmission of the daughter products, we have prepared and characterized a series of thin-films from naturally occurring isotopes of the strong neutron absorbers lithium (Li), boron (B), and gadolinium (Gd). The films have been created using a combination of sputtering and evaporation techniques. The composition of the resulting films have been investigated using EDS and RBS, while the interfacial mixing between the layers has been studied using a combination of RBS and SEM experiments. Experiments studying the aging of the detector films in the detector gas as well as alloying of Li and the film substrate, have also been undertaken and the results are reported here.
  • Keywords
    Rutherford backscattering; boron; gadolinium; lithium; neutron absorption; neutron sources; position sensitive particle detectors; scanning electron microscopy; sputtering; thin films; vacuum deposition; B; EDS; Gd; Li; Oak Ridge National Laboratory; RBS; SEM experiments; alloying; alpha particles; boron film; daughter product transmission; detector film aging; detector gas; evaporation techniques; film substrate; gadolinium film; gamma particles; interfacial mixing; layered converters; lithium film; material chemistry; naturally occurring isotopes; neutron absorbers; neutron imaging detector; position sensitive charged particle detector; position sensitive neutron detectors; spallation neutron source; sputtering; thin-film neutron converter foils; Chemistry; Gamma ray detection; Gamma ray detectors; Laboratories; Neutrons; Optical imaging; Position sensitive particle detectors; Radiation detectors; Sputtering; Transistors; Boron films; gadolinium films; lithium films; neutron converter; neutron detectors; thin-film devices;
  • fLanguage
    English
  • Journal_Title
    Nuclear Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9499
  • Type

    jour

  • DOI
    10.1109/TNS.2004.829366
  • Filename
    1312012