Scintillation properties of LYSO crystals
Thomas C. Kimble, Mitch M. C. Chou, Bruce H. T. Chai
Abstract
Thomas C. Kimble, Mitch M. C. Chou, Bruce H. T. Chai
Abstract
We evaluate the scintillator properties of LYSO (Lu/sub (2-x)/Y/sub x/SiO/sub 5/:Ce) crystals with the amount of lutetium ranging from 15 to 100%. The radii of the cations Lu/sup 3+/ and Y/sup 3+/ differ by only 5%, therefore, one can substitute yttrium for lutetium without changing the structure. The addition of yttrium has several advantages: the raw material Y/sub 2/O/sub 3/ is much cheaper than Lu/sub 2/O/sub 3/ and the melting point is up to 100/spl deg/C less. Since yttrium has a much lower atomic number and atomic mass than lutetium, LYSO crystals have a lower density and effective atomic number. This means that LYSO does not absorb X-rays as well as LSO. LYSO with 50% lutetium, however, has an effective atomic number that is just 11% less than LSO and the light yield of LYSO with 30% or more lutetium is roughly the same as that of LSO samples. LYSO scintillators with 50% or more lutetium could provide a more cost effective scintillator material for some applications.
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We evaluate the scintillator properties of LYSO (Lu/sub (2-x)/Y/sub x/SiO/sub 5/:Ce) crystals with the amount of lutetium ranging from 15 to 100%. The radii of the cations Lu/sup 3+/ and Y/sup 3+/ differ by only 5%, therefore, one can substitute yttrium for lutetium without changing the structure. The addition of yttrium has several advantages: the raw material Y/sub 2/O/sub 3/ is much cheaper than Lu/sub 2/O/sub 3/ and the melting point is up to 100/spl deg/C less. Since yttrium has a much lower atomic number and atomic mass than lutetium, LYSO crystals have a lower density and effective atomic number. This means that LYSO does not absorb X-rays as well as LSO. LYSO with 50% lutetium, however, has an effective atomic number that is just 11% less than LSO and the light yield of LYSO with 30% or more lutetium is roughly the same as that of LSO samples. LYSO scintillators with 50% or more lutetium could provide a more cost effective scintillator material for some applications.
Key concepts: Lutetium, Lyso-, Yttrium, Scintillator, Scintillation, Materials science, Crystal (programming language), Physics