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Mobile interstitial model and mobile electron model of mechano-induced luminescence in coloured alkali halide crystals

机译:彩色卤代碱晶体中机械致发光的移动间隙模型和移动电子模型

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摘要

A theoretical study is made on the mobile interstitial and mobile electron models of mechano-induced luminescence in coloured alkali halide crystals. Equations derived indicate that the mechanoluminescence intensity should depend on several factors like strain rate, applied stress, temperature, density of F-centres and volume of crystal. The equations also involve the efficiency and decay time of mechanoluminescence. Results of mobile interstitial and mobile electron models are compared with the experimental observations, which indicated that the latter is more suitable as compared to the former. From the temperature dependence of ML, the energy gaps between the dislocation band and ground state of F-centre is calculated which are 0.08, 0.072 and 0.09 eV for KCl, KBr and NaCl crystals, respectively. The theory predicts that the decay of ML intensity is related to the process of stress relaxation in crystals.
机译:对有色碱金属卤化物晶体中机械诱导发光的移动间隙和移动电子模型进行了理论研究。得出的方程式表明,机械发光强度应取决于几个因素,例如应变率,施加应力,温度,F中心密度和晶体体积。该方程还涉及机械发光的效率和衰减时间。将移动间隙和移动电子模型的结果与实验观察结果进行了比较,这表明与前者相比,后者更合适。根据ML的温度依赖性,计算出位错带与F中心基态之间的能隙,对于KCl,KBr和NaCl晶体分别为0.08、0.072和0.09 eV。该理论预测,ML强度的衰减与晶体中应力松弛的过程有关。

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