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Analysis of radiation-induced hole localisation in titanates

机译:钛酸盐中辐射诱导的空穴定位分析

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Hole self-trapping in technologically important BaTiO3 and SrTiO3 crystals is studied using a quantum-chemical method developed for periodic systems, e.g., crystals. The computations are carried out in the self-consistent-field manner using the embedded molecular cluster model. The possibility of spontaneous hole self-trapping is estimated by employing an analytical procedure based on the energetical favourability principle. Our results support the self-trapping of radiation-induced hole in BaTiO3 crystals while such an outcome is not predicted for SrTiO3 crystals. Computational results are discussed in the light of available experimental data on light-induced absorption spectra measurements in BaTiO3 crystals. (C) 2001 Elsevier Science Ltd. All rights reserved. [References: 16]
机译:使用为周期系统(例如晶体)开发的量子化学方法研究了具有技术重要性的BaTiO3和SrTiO3晶体中的空穴自陷。使用嵌入的分子簇模型以自洽场方式进行计算。通过采用基于能量有利性原理的分析程序来估计自发空穴自陷的可能性。我们的结果支持BaTiO3晶体中辐射诱导空穴的自陷,而对于SrTiO3晶体则无法预测这种结果。根据可用的实验数据讨论计算结果,有关BaTiO3晶体中光诱导吸收光谱的测量。 (C)2001 Elsevier ScienceLtd。保留所有权利。 [参考:16]

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