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Formation mechanism and elimination methods for anti-site defects in LiNbO3/LiTaO3 crystals

机译:LiNbO3 / LiTaO3晶体中反位缺陷的形成机理及消除方法

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摘要

Lithium niobate (LiNbO3 or LN) and lithium tantalate (LiTaO3 or LT) crystals, which have been widely applied in many fields such as electro-optics, birefringence, nonlinear optics, photorefraction, piezoelectricity and other areas, are reviewed. The studies of the properties and growth techniques are reviewed to give a brief idea of the growth of LN and LT crystals with high quality. The anti-site defects of these crystal materials have been accepted as one of the key factors constraining the improvement of their properties. This review shows the simulated calculation and structure of anti-site defects in LN/LT crystals and their effect on the physical properties and summarizes the recent progress in theoretical and technical processes, including the improved applications. We reviewed two main methods for the elimination of anti-site defects: doping of metal ions and growth of stoichiometric crystals. Finally, the prospects for future studies are outlined.
机译:综述了铌酸锂(LiNbO3或LN)和钽酸锂(LiTaO3或LT)晶体,这些晶体已广泛应用于许多领域,例如电光学,双折射,非线性光学,光折射,压电等领域。回顾了对性质和生长技术的研究,以简要介绍高质量的LN和LT晶体的生长。这些晶体材料的抗位缺陷已被认为是限制其性能改善的关键因素之一。这篇综述显示了LN / LT晶体中反位缺陷的模拟计算和结构及其对物理性能的影响,并总结了理论和技术过程的最新进展,包括改进的应用。我们回顾了消除反位缺陷的两种主要方法:金属离子掺杂和化学计量晶体的生长。最后,概述了未来研究的前景。

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