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Thermoluminescence properties of undoped and nitrogen-doped CVD diamond exposed to gamma radiation

机译:暴露于伽玛射线的未掺杂和氮掺杂的CVD金刚石的热致发光特性

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摘要

It is known that the thermoluminescence (TL) performance of CVD diamond depends on the impurity concentration and doping materials introduced during growing. We report on the TL properties of undoped and 750 ppm nitrogen-doped CVD diamond grown on (0 0 1) silicon substrate. The samples were exposed to gamma radiation from a Gammacell 200 Nordion irradiator in the 10-500 Gy dose range at 627 mGy/min dose rate. The nitrogen-doped CVD diamond sample exhibited a TL glow curve peaked around 537 K and a small shoulder about 411 K and a linear dose behavior in the 10-60 Gy dose range. In contrast, the undoped specimen showed a 591 K peaked TL glow curve and linear dose response for 10-100 Gy doses. However, both samples displayed a non-linear dose response for doses higher than 100 Gy. The doping effects seem to cause a higher TL efficiency, which may be attributed to the differences in the diamond bonding and amorphous carbon on the CVD samples as well as to the presence of nitrogen. In addition, the nitrogen content may produce some structural and morphological surface effects, which may account for the distinctive TL features and dose response of the diamond samples.
机译:众所周知,CVD金刚石的热致发光(TL)性能取决于生长过程中引入的杂质浓度和掺杂材料。我们报告了在(0 0 1)硅衬底上生长的未掺杂和750 ppm氮掺杂CVD金刚石的TL特性。样品以627 mGy / min的剂量率暴露于10-500 Gy剂量范围内的Gammacell 200 Nordion辐照器的伽玛射线。氮掺杂的CVD金刚石样品的TL辉光曲线在537 K附近出现峰,小肩峰在411 K附近,并且线性剂量行为在10-60 Gy剂量范围内。相反,未掺杂样品在10-100 Gy剂量下显示591 K峰值TL发光曲线和线性剂量响应。但是,对于高于100 Gy的剂量,两个样品均显示出非线性剂量响应。掺杂效应似乎导致更高的TL效率,这可能归因于CVD样品上金刚石键合和非晶碳的差异以及氮的存在。另外,氮含量可能会产生一些结构和形态表面效应,这可能解释了钻石样品独特的TL特性和剂量响应。

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