首页> 外文会议>Eighth International Conference on Photorefractive Effects, Materials, and Devices, Jul 8-12, 2001, Delavan, Wisconsin >Origin of the enhancement of resistance against optical damage in Mg-doped nearly stoichiometric lithium niobate crystals
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Origin of the enhancement of resistance against optical damage in Mg-doped nearly stoichiometric lithium niobate crystals

机译:掺镁的近化学计量的铌酸锂晶体中增强的抗光学损伤的起源

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The ultraviolet-visible and infrared absorption spectra of Fe_2O_3 and MgO co-doped lithium niobate (LiNbO_3) crystals have been investigated. The experimental results show that some Fe~(2+) ions are still in Li-sites while the doping concentration of MgO is above threshold. Our results show that the large reduction of defect (Mg_(Li)~+ - V_(Li)~-) in nearly stoichiometric LiNbO_3 is the key factor to reduce the content of (Fe_(Li)~+ - V_(Li)~-) for anti-photorefraction. Based on defect chemical analysis, we obtained that only 1.3 mol.% of MgO is needed to suppress the optical damage completely in a nearly stoichiometric LiNbO_3 crystal with [Li]/[Nb]=49.9/50.1 while 21.2 mol.% needed in congruent ones.
机译:研究了Fe_2O_3和MgO共掺杂铌酸锂(LiNbO_3)晶体的紫外-可见光谱和红外吸收光谱。实验结果表明,当MgO的掺杂浓度高于阈值时,部分Fe〜(2+)离子仍然存在于Li位点。我们的结果表明,几乎化学计量的LiNbO_3中的缺陷(Mg_(Li)〜+-V_(Li)〜-)大量减少是减少(Fe_(Li)〜+-V_(Li)〜含量的关键因素-)用于抗光折射。根据缺陷化学分析,我们得出,在[Li] / [Nb] = 49.9 / 50.1的几乎化学计量的LiNbO_3晶体中,仅需要1.3 mol。%的MgO即可完全抑制光学损伤,而在全等条件下则需要21.2 mol。%那些。

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