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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

Inactive Publication Date: 2007-12-05
TOHOKU TECHNO ARCH CO LTD +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In addition, the service life of the Ir crucible is also short, and the huge cost of recasting the crucible becomes a great burden for the manufacturer.
Also, in order to achieve this ultra-high temperature, the high-frequency oscillator must also achieve high output, thus resulting in an increase in the overall running cost
[0008] On the other hand, in Ce:GSO and Ce:LSO used as light-emitting materials for scintillators, if a large amount of Ce as a light-emitting element is contained, the amount of light emitted increases, but if it exceeds a certain %, the phenomenon of concentration quenching (concentration extinction) is obvious. , cannot present the scintillator effect
[0009] Moreover, Ce is second only to La among the rare earth ions, and must be larger than the representative rare earth ions (Y, Gd, Lu) in the parent crystal. Therefore, the effective segregation coefficient of Ce deviates greatly from 1.
That is, the compositional variation of Ce along the growth direction cannot be avoided
This phenomenon causes changes in physical parameters such as fluorescence decay time and luminescence amount, and becomes a serious problem when used in high-precision PET, etc.

Method used

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  • Pr-containing single crystal for scintillator, process for producing the same, radiation detector and inspection apparatus
  • Pr-containing single crystal for scintillator, process for producing the same, radiation detector and inspection apparatus
  • Pr-containing single crystal for scintillator, process for producing the same, radiation detector and inspection apparatus

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Experimental program
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Effect test

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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Abstract

The present invention provides an oxide-base scintillator single crystal having an extremely large energy of light emission, adoptable to X-ray CT and radioactive ray transmission inspection apparatus, and more specifically to provide a Pr-containing, garnet-type oxide single crystal, a Pr-containing perovskite-type oxide single crystal, and a Pr-containing silicate oxide single crystal allowing detection therefrom light emission supposedly ascribable to 5d-4f transition of Pr.

Description

technical field [0001] The present invention relates to a single crystal for a scintillator containing praseodymium (Pr), a method for producing the same, a radiation detector and an inspection device using the single crystal for a scintillator. Background technique [0002] In positron radionuclide tomography (PET), since high-energy gamma rays (annihilation gamma rays: 511keV) are detected by coincidence counting, scintillation detection with high sensitivity and high-speed response has been used device. Among the characteristics of the detector, high count rate characteristics and high time resolution for eliminating random coincidence count noise are required, and excellent energy resolution is also required for eliminating scattered rays from the body. [0003] Therefore, as a scintillator suitable for a detector meeting the above requirements, it is desired to have a high density and a large atomic number (high photoelectric absorption ratio) in terms of detection eff...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C30B29/28C09K11/79C30B11/04C09K11/80C09K11/00G01T1/20C09K11/08G01T1/202C09K11/78
Inventor 吉川彰荻野拓镰田圭青木谦治福田承生
Owner TOHOKU TECHNO ARCH CO LTD
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