1983
DOI: 10.1063/1.93760
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Cerium-activated Gd2SiO5 single crystal scintillator

Abstract: Cerium-activated phosphors are characterized by their fast luminescence decay. Gadolinium orthosilicate (Gd2SiO5) is a material possessing a high atomic number, and can also play host to the cerium activator. Cerium-doped Gd2SiO5 single crystals were grown by the Czochralski technique, and their luminescence properties were examined. The light output was 1.3 times larger than that of the best Bi4Ge3O12, and the decay constant was 60 ns at room temperature.

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Cited by 361 publications
(110 citation statements)
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“…The scintillating crystal GSO (Gd 2 SiO 5 (Ce)), where gadolinium is 74.4% by weight, was first developed in the 1980's [9]. It is an attractive technology to realize an active detector based on gadolinium.…”
Section: Introductionmentioning
confidence: 99%
“…The scintillating crystal GSO (Gd 2 SiO 5 (Ce)), where gadolinium is 74.4% by weight, was first developed in the 1980's [9]. It is an attractive technology to realize an active detector based on gadolinium.…”
Section: Introductionmentioning
confidence: 99%
“…N the last decade, mass production capabilities of the Gadolinium Orthosilicate (Gd SiO , GSO) [1], lutetium oxyorthosilicate (Lu SiO , LSO) [2] and lutetium-yttrium oxyorthosilicate (Lu Y SiO , LYSO) [3], [4] crystals have been established for the medical industries. Because of their high stopping power and fast bright scintillation, LSO and LYSO crystal scintillators have also attracted broad interest in the high energy physics community for future experiments, such as a super B factory [5] and the international linear collider (ILC) [6].…”
mentioning
confidence: 99%
“…Multiple quantum wells hybrid structures, where semiconducting PbI 4 layers are alternated with organic insulating ones, have shown superfast efficient luminescence (390 ps) due to excitonic superradiance and quantum confinement effect which might allow them to be used as ultra-fast scintillators (Shibuya et al, 2004). Scintillation properties of the Ce-doped rare-earth orthosilicates were mentioned for the first time in early 1980s in the study dealing with the Gd 2 SiO 5 :Ce (GSO) (Takagi et al, 1983). Following studies concerned mainly Lu 2 SiO 5 :Ce (LSO) (Suzuki et al, 1992) and mixed Lu 2-203 x Y x SiO 5 :Ce (LYSO) (Cooke et al, 2000) which became materials of choice for PET imaging in medicine.…”
Section: Introductionmentioning
confidence: 99%