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Temperature dependence of pulse-induced mechanoluminescence excitation in coloured alkali halide crystals

机译:彩色碱金属卤化物晶体中脉冲诱导的机械发光激发的温度依赖性

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摘要

In practice, the relative efficiencies of different crystals are often determined under identical conditions of temperature and excitation. If the temperature of a crystal is increased or decreased with respect to room temperature, luminescence efficiency may get increased or decreased according to the composition of the crystal. When coloured crystals of Nad, NaBr, KCI and KBr are excited by pulse-induced excitation at different temperatures, the mechanoluminescence (ML) intensity increases with temperature. The ML intensity of first peak, I_(ml) second peak, I_(ml) and the total ML intensity, I_T, initially increase with temperature and then tend to attain an optimum value for a particular temperature of crystals. The ratio, I_(ml/I_(ml), is found to increase with increasing temperature of the crystals. The expression derived on the basis of rate equations, are able to explain the temperature dependence of ML intensity on several parameters.
机译:实际上,通常在相同的温度和激发条件下确定不同晶体的相对效率。如果晶体的温度相对于室温升高或降低,则发光效率可能根据晶体的组成而升高或降低。当在不同温度下通过脉冲激发激发Nad,NaBr,KCI和KBr的有色晶体时,机械发光(ML)强度随温度增加。第一个峰的ML强度I_(ml)第二个峰I_(ml)和总ML强度I_T最初随温度升高,然后趋于达到特定晶体温度的最佳值。发现I_(ml / I_(ml)的比率随着晶体温度的升高而增加,基于速率方程式导出的表达式能够解释ML强度对几个参数的温度依赖性。

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