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Phototransferred thermoluminescence of α-Al 2O 3:C: Experimental results and empirical models

机译:α-Al 2 O 3 :C:实验结果和经验模型

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AbstractThe thermoluminescence glow curve of α-Al2O3:C consists of a prominent apparently-single peak and a number of weaker intensity secondary peaks. Phototransferred thermoluminescence (PTTL) from secondary glow peaks in α-Al2O3:C is reported. For completeness and to aid discussion, complementary results for the main peak are included. The problem studied is one of phototransferred thermoluminescence for a system of multiple acceptors and multiple donors. A TL glow curve recorded at 5?°C/s following irradiation to 0.5?Gy shows the main peak (labelled II) at 240?°C and two secondary peaks at 86?°C (peak I) and 360?°C (peak III). Peak I is reproduced under phototransfer after any preheating between 100 and 500?°C. Peak II is also reproduced as a PTTL peak after preheating to any temperature up to 800?°C. For the latter, the duration of preheating matters because if the sample is preheated at 800?°C for say, 6?min, PTTL is obtained but not when this is extended to say, 15?min. No PTTL was observed from peak III at all. A study of the time dependence of the PTTL intensity from peak III, following preheating that removes peaks I and II, shows that its electron trap acts as an acceptor when the duration of illumination to stimulate electrons from deep traps is brief but that when the illumination time is extended, the electron trap for peak III loses some of its trapped electrons to the shallower traps thus acting as a donor trap. Kinetic analysis of PTTL peak I shows that its activation energy is ~0.70?eV and its frequency factor, of the order
机译:<![CDATA [ 抽象 α-al 2 2 O 3 :C包括突出的明显单峰和许多较弱的强度二级峰。来自α-Al 2 O 3 :C据报道。为了完整性和援助讨论,包括主峰的互补结果。研究的问题是用于多个受体和多个供体的系统的光转移热致发光之一。在照射到0.5Ω℃下以5Ω·c / s记录的T1发光曲线显示在240°C的主峰(标记II)和86Ω·°C(峰I)和360?°C(峰III)。在100到500Ω·℃的任何预热之后,在光电转换器下再现峰I。在预热至800Ω℃的任何温度后,也将峰II作为PTTL峰再现。对于后者,预热物质的持续时间是因为如果样品在800?°C处预热,则获得6?min,获得PTTL但是当延长时,不得延伸到15?min。根本没有观察到PTTL。从峰III进行峰值III的PTTL强度的时间依赖性研究除了去除峰I和II的预热之后,示出了当照射的持续时间从深陷阱刺激电子时的持续时间表示,其电子陷阱是简要的,但当照明时延伸时间,用于峰III的电子捕集器使其一些被困电子捕获到较浅的陷阱,从而充当供体阱。 PTTL峰的动力学分析我表明其激活能量为0.70?EV及其频率因子,订单

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