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The behavior of thermally and optically stimulated luminescence of SrAl2O4 : Eu2+, Dy3+ long persistent phosphor after blue light illumination

机译:蓝光照射后SrAl2O4:Eu2 +,Dy3 +长余辉荧光粉的受热和受光激发行为

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The behavior of afterglow (AG), thermoluminescence (TL), infrared stimulated luminescence (IRSL) and phototransferred TL (PTTL) under thermal and/or infrared (IR) stimulation in blue (470 run) light illuminated at room temperature (RT) SrAl2O4: Eu2+, Dy3+ is presented. The TL glow curve consists of lour peaks with maxima at about 340, 430, 560 and 680 K. The 340 and 440 K peaks are described well by second order kinetics with activation energies of 0.83 and 1.05 eV, respectively. The AG decay is fitted by the Becquerel's law with exponent 1.5 and correlates well with the thermal emptying of the traps responsible tor the 340 K peak. The 340 and 430 K TL peak traps are destroyed under IR (830 nm) stimulation creating IRSL. IR stimulation after illumination with blue light and preliminary heating restore partially the 340 and 430 K TL peaks by phototransfer from deeper traps. The shape of the IRSL decay curves depends strongly on the preheating temperature and is determined by simultaneous refilling of the 340 and 430 K TL traps and their reverse filling due to phototransfer from the deeper traps under IR stimulation. The obtained data are interpreted by the transformation of Eu2+ and Dy3+ to Eu3+ and Dy2+ under blue light illumination and their reverse transformation under thermal or IR stimulation. The Eu2+ ions are the luminescent centers and the Dy2+ centers are the IR sensitive traps responsible for the TL peaks, AG and IRSL.
机译:在室温(SrAl2O4)照射的蓝色(470色)光下,在热和/或红外(IR)刺激下,余辉(AG),热发光(TL),红外激发发光(IRSL)和光转移TL(PTTL)的行为:呈现Eu2 +,Dy3 +。 TL辉光曲线由最大峰值在约340、430、560和680 K的lour峰组成。通过激活能分别为0.83和1.05 eV的二阶动力学很好地描述了340和440 K峰。 AG衰减按照贝克勒尔定律与指数1.5拟合,并且与负责340 K峰的阱的热排空密切相关。 340和430 K TL峰陷阱在IR(830 nm)刺激下被破坏,形成IRSL。蓝光照射和初步加热后的红外刺激通过更深陷阱的光转移部分还原了340和430 K TL峰。 IRSL衰减曲线的形状在很大程度上取决于预热温度,并由340和430 K TL阱同时充填以及由于在IR刺激下来自较深阱的光转移而反向填充而确定。所获得的数据通过蓝光照射下Eu2 +和Dy3 +到Eu3 +和Dy2 +的转化以及它们在热或IR刺激下的反向转化来解释。 Eu2 +离子是发光中心,Dy2 +中心是负责TL峰AG和IRSL的对IR敏感的陷阱。

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