AI Article Synopsis

  • The (Lu,Gd)(Ga,Al)O garnet crystals show high scintillation efficiency, with a maximum light yield of 50,000 ph/MeV.
  • Recent advancements have led to the development of single-crystalline and composite film/crystal scintillators, which can distinguish between different types of particles like α, β, and γ using pulse shape discrimination.
  • New findings indicate that specific compositions, especially the LuGdAlGaO:Ce film on GAGG:Ce substrate, demonstrate suitable light yields and varying decay curves for α and γ radiation, making them promising for particle identification.

Article Abstract

The crystals of (Lu,Gd)(Ga,Al)O multicomponent garnets with high density ρ and effective atomic number Z are characterized by high scintillation efficiency and a light yield value up to 50,000 ph/MeV. During recent years, single-crystalline films and composite film/crystal scintillators were developed on the basis of these multicomponent garnets. These film/crystal composites are potentially applicable for particle identification by pulse shape discrimination due to the fact that α-particles excite only the film response, γ-radiation excites only the substrate response, and β-particles excite both to some extent. Here, we present new results regarding scintillating properties of selected (Lu,Gd)(Ga,Al)O:Ce single-crystalline films under excitation by alpha and beta particles and gamma ray photons. We conclude that some of studied compositions are indeed suitable for testing in the proposed application, most notably LuGdAlGaO:Ce film on the GAGG:Ce substrate, exhibiting an α-particle-excited light yield of 1790-2720 ph/MeV and significantly different decay curves excited by α- and γ-radiation.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9696813PMC
http://dx.doi.org/10.3390/ma15227925DOI Listing

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