3.8 Proceedings Paper

Transparent Ceramic Scintillators for Gamma Spectroscopy and MeV Imaging

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SPIE-INT SOC OPTICAL ENGINEERING
DOI: 10.1117/12.2189156

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scintillators; gamma ray detection; transparent ceramics; radiography; X-ray imaging; garnets; bixbyites

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We report on the development of two new mechanically rugged, high light yield transparent ceramic scintillators: (1) Ce-doped Gd-garnet for gamma spectroscopy, and (2) Eu-doped Gd-Lu-bixbyite for radiography. GYGAG(Ce) garnet transparent ceramics offer rho = 5.8g/cm(3), Z(eff) = 48, principal decay of <100 ns, and light yield of 50,000 Ph/MeV. Gd-garnet ceramic scintillators offer the best energy resolution of any oxide scintillator, as good as R(662 keV) = 3% (Si-PD readout) for small sizes and typically R(662 keV) < 5% for cubic inch sizes. For radiography, the bixbyite transparent ceramic scintillator, (Gd, Lu, Eu)(2)O-3, or GLO, offers excellent x-ray stopping, with rho = 9.1 g/cm(3) and Z(eff) = 68. Several 10 diameter by 0.1 thickness GLO scintillators have been fabricated. GLO outperforms scintillator glass for high energy radiography, due to higher light yield (55,000 Ph/MeV) and better stopping, while providing spatial resolution of > 8 lp/mm.

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