• DocumentCode
    1372912
  • Title

    Pulse Shape Discrimination in Impure and Mixed Single-Crystal Organic Scintillators

  • Author

    Zaitseva, Natalia ; Glenn, Andrew ; Carman, Leslie ; Hatarik, Robert ; Hamel, Sebastien ; Faust, Michelle ; Schabes, Brandon ; Cherepy, Nerine ; Payne, Stephen

  • Author_Institution
    Lawrence Livermore Nat. Lab., Livermore, CA, USA
  • Volume
    58
  • Issue
    6
  • fYear
    2011
  • Firstpage
    3411
  • Lastpage
    3420
  • Abstract
    Neutron/gamma pulse shape discrimination (PSD) utilized for detection of high-energy neutrons with organic scintillators was investigated using a model system of mixed diphenylacetylene-stilbene single crystals of different compositions. The results of the studies, which include experimental tools of crystal growth and characterization combined with computer simulation, showed that the presence of impurities with lower bandgap energies can be a major factor influencing PSD properties of organic materials. Depending on the concentration, an impurity may suppress or increase the rate of excited triplet state interaction leading, respectively, to a complete disappearance or enhancement of PSD, consistent with a percolation threshold. The results are applied to produce novel materials with controlled decay characteristics. Single crystals with a large fraction of delayed light and enhanced PSD have been grown for high energy neutron detection, while crystals with suppressed delayed light were produced for use as low-afterglow scintillators for energetic neutron detection in time-of-flight experiments.
  • Keywords
    neutron detection; scintillation counters; computer simulation; crystal growth; diphenylacetylene-stilbene single crystals; excited triplet state; high-energy neutron detection; low-afterglow scintillators; percolation threshold; pulse shape discrimination; single-crystal organic scintillators; time-of-flight experiments; Crystals; Impurities; Neutrons; Organic materials; Scintillation counters; Shape; Diphenylacetylene; neutron detector; organic scintillators; pulse shape discrimination; stilbene;
  • fLanguage
    English
  • Journal_Title
    Nuclear Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9499
  • Type

    jour

  • DOI
    10.1109/TNS.2011.2171363
  • Filename
    6074975