A Model Calculation of Temperature and Size Dependent Thermoluminescence Intensity from Silicon Nanostructures

N. Debelo
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Abstract

Thermoluminescence (TL) from silicon nanostructures has received considerable attention in recent years. Despite of some theoretical and experimental investigation, the origin and mechanism of TL is not clearly understood. Most of the bulk materials start showing fascinating behaviors as their size is reduced to nano level. The ability to emit light as a consequence of absorption of energy (luminescence) is one of these exotic behaviors. TL is the thermally stimulated emission of light due to absorption of energy from radiation. So, there is a direct relationship between temperature (due to absorption of heat or radiation) and the TL intensity. Starting from the concept of bulk material, we derive the mathematical expression for the temperature and size dependent TL intensity using model calculation. We specifically calculate the TL intensity as a function of temperature and nanoparticle size.
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硅纳米结构热释光强度随温度和尺寸变化的模型计算
近年来,硅纳米结构的热释光引起了广泛的关注。尽管进行了一些理论和实验研究,但对TL的起源和机制尚不清楚。大多数块状材料在尺寸减小到纳米级时开始表现出迷人的行为。由于吸收能量(发光)而发光的能力就是这些奇特行为之一。TL是由于吸收来自辐射的能量而产生的热激发光发射。因此,温度(由于热量或辐射的吸收)与TL强度之间存在直接关系。从块状材料的概念出发,通过模型计算,导出了温度和尺寸对热释光强度的影响的数学表达式。我们特别计算了TL强度作为温度和纳米颗粒尺寸的函数。
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