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Ion-beam damage and non-radiative exciton decay in LiNbO3

机译:LiNbO3中的离子束损伤和非辐射激子衰减

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摘要

A model to account for the defects generated by ion irradiation in the electronic loss regime, and based on non-radiative decay of self-trapped excitons, is discussed and compared to experiments. It takes into account the competing role of the light-emission (radiative) and defect-creation (non-radiative) decay channels. Calculations are applied to LiNbO3, a useful electro-optic crystal, where a large number of relevant experimental data are available. The model explains the strong nonlinear dependence of the defect creation rates as a function of electronic stopping power (thresholding behavior). It also satisfactorily accounts for the formation and growth of amorphous layers by ion-beam irradiation at moderate fluences, φ>1013 cm-2. Moreover, it also provides the right trend and reasonable quantitative accordance to data showing the dependence of the track radius on stopping power in single-impact experiments. Finally, the model determines the light emission yield during irradiation. In particular, it predicts that the number of photons emitted by ion impact first increases and then decreases monotonically with increasing electronic stopping power. © 2007 Elsevier B.V. All rights reserved.
机译:讨论了一种模型,该模型用于解释在电子损失状态下由离子辐照产生的缺陷,并且该模型基于自陷激子的非辐射衰减,并与实验进行了比较。它考虑了发光(辐射)和缺陷创建(非辐射)衰减通道的竞争作用。计算适用于有用的电光晶体LiNbO3,那里有大量相关的实验数据。该模型解释了缺陷产生率与电子停止能力(阈值行为)之间的强非线性相关性。它也令人满意地说明了在中等通量φ> 1013 cm-2时通过离子束辐照形成和生长非晶层的情况。此外,它还提供了正确的趋势和合理的定量依据,这些数据表明了单次冲击实验中磁道半径对停止功率的依赖性。最后,该模型确定照射过程中的发光量。特别是,它预测离子碰撞发射的光子数量会随着电子停止功率的增加而先增加然后单调减少。 ©2007 Elsevier B.V.保留所有权利。

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