DocumentCode :
1079077
Title :
Scintillation Properties of 2-Inch-Diameter {\\rm \\Pr}:{\\rm Lu}_{3}{\\rm Al}_{5}{\\rm O}_{12} (LuAG) Single Crystal
Author :
Kamada, Kei ; Yanagida, Takayuki ; Tsutsumi, Kousuke ; Usuki, Yoshiyuki ; Sato, Mitsuhiro ; Ogino, Hiraku ; Novoselov, Andrey ; Yoshikawa, Akira ; Kobayashi, Masaaki ; Sugimoto, Shojiro ; Saito, Fumio
Author_Institution :
Mater. Res. Lab., Furukawa Co. Ltd., Tsukuba
Volume :
56
Issue :
3
fYear :
2009
fDate :
6/1/2009 12:00:00 AM
Firstpage :
570
Lastpage :
573
Abstract :
Pr:LuAG crystals possess interesting properties, such as high density, high light yield, and very fast 5d-4f emission decay time. Recently, we developed a Pr:LuAG single crystal with a diameter of 2 inches for scintillator applications, such as medical imaging. In this study, Pr-doped Lu3Al5O12 (Pr:LuAG) single crystals with a diameter of 2 inches were grown by means of the Czochralski method; a body length of up to 90 mm was achieved. The Pr:LuAG crystals produced a homogeneous light yield with approximately 2.5 times less intensity compared to that produced by a conventional Ce:LSO crystal. A sample with dimensions of 5 mm times 5 mm times 1 mm exhibited energy resolutions of 4.8% at 662 keV, as measured by using a photomultiplier (PMT: Hamamatsu H6531), and 5.8% at 662 keV, as measured by using an Avalanche photodiode (APD: Hamamatsu S8664-55). The Pr:LuAG crystals exhibited a very fast rise time of approximately 0.4 ns, excited by a pulsed X-ray at room temperature. The decay time was approximately 18 ns, along with a noticeable presence of slower decay components (with a decay time of 55.0 ns). Furthermore, the Pr:LuAG crystals showed good linearity between the energy and pulse height within approximately 4% of the standard deviation in the range from 122 keV (152Eu) to 1.4 MeV (241Am) .
Keywords :
avalanche photodiodes; crystal growth from melt; gamma-ray detection; luminescence; lutetium compounds; photomultipliers; praseodymium; scintillation; scintillation counters; 5d-4f emission decay time; Czochralski method; Pr:Lu3Al5O12; X-ray excitation; avalanche photodiode; electron volt energy 122 keV to 1.4 MeV; electron volt energy 662 keV; gamma-ray detectors; luminescence; medical imaging; photomultiplier; pulse height; room temperature; scintillator; standard deviation; temperature 293 K to 298 K; Automatic control; Avalanche photodiodes; Biomedical imaging; Control systems; Crystalline materials; Crystals; Energy measurement; Energy resolution; Photomultipliers; Temperature; 5d-4f luminescence; Crystal growth; Pr3+; gamma-ray detectors; garnets;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2009.2019751
Filename :
5076018
Link To Document :
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