Abstract
본 논문에서는 신소재 <TEX>$Rb_2LiCeCl_6$</TEX> 할라이드 섬광체를 개발하고, 개발된 섬광체의 섬광 및 열형광 특성에 대하여 조사하였다. <TEX>$Rb_2LiCeCl_6$</TEX>의 섬광스펙트럼은 <TEX>$Ce^{3+}$</TEX> 이온의 4f <TEX>${\rightarrow}$</TEX> 5d 천이에 따라 파장범위가 350~410 nm, 피이크 파장은 368 nm 및 378 nm이었다. 섬광감쇠시간 특성은 71 ns의 빠른 시간 특성 성분(85%)과 405 ns의 느린 성분(15%)의 2개로 구성되며, 잔광에 기여한 포획준위의 물리적 변수를 열형광 측정법에서 분석한 결과, 포획 준위의 활성화에너지, 발광차수 및 주파수 인자의 평균값은 각각 0.75 eV, 1.48 및 <TEX>$3.0{\times}10^8s^{-1}$</TEX>이었다. We developed a new <TEX>$Rb_2LiCeCl_6$</TEX> scintillator and determined the scintillation and thermoluminescence properties of the scintillator. The emission spectrum of <TEX>$Rb_2LiCeCl$</TEX> is located in the range of 350 ~ 410 nm, peaking at 368 nm and 378 nm, due to the 4f <TEX>${\rightarrow}$</TEX> 5d transition of <TEX>$Ce^{3+}$</TEX> ions. The fluorescence decay time of the crystal is composed two components. The fast component is 71 ns (85%) and the slow component is 405 ns (15%) of the crystal. The after-glow is caused by the electron and hole traps in the crystal lattice. We determined physical parameters of the traps in the crystal. The determined activation energy(E), kinetic order(m) and frequency factor(s) of the trap are 0.75 eV, 1.48 and <TEX>$3.0{\times}10^8s^{-1}$</TEX>, respectively.
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More From: Journal of the Korea Academia-Industrial cooperation Society
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