Pr-containing single crystal for scintillator, process for producing the same, radiation detector and inspection apparatus
A manufacturing method and single crystal technology, applied in the direction of measuring devices, single crystal growth, single crystal growth, etc., can solve problems such as increased operating costs, concentration quenching, and short service life of crucibles, achieving short sampling time and increased The effect of the number of samples
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Embodiment Al
[0181] Using the micro-pull method to produce (Pr 0.001 Y 0.999 ) 3 al 5 o 12 Composition (Pr0.1%:YAG) expressed as a single crystal of garnet-type oxide scintillator. The obtained crystals are shown in FIG. 1 . This single crystal is a transparent single crystal.
Embodiment A2
[0183] Using the micro-pull method to produce (Pr 0.002 Y 0.998 ) 3 al 5 o 12Composition (Pr0.2%: YAG) of the garnet-type oxide scintillator single crystal. The obtained crystals are shown in FIG. 2 . This single crystal is a transparent single crystal.
Embodiment A3
[0185] Using the micro-pull method to produce (Pr 0.001 Lu 0.999 ) 3 al 5 o 12 Composition (Pr0.1%: LuAG) of the garnet-type oxide scintillator with a single crystal. The obtained crystals are shown in FIG. 3 . This single crystal is a transparent single crystal.
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