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首页> 外文期刊>Crystal Research and Technology: Journal of Experimental and Industrial Crystallography >Domain structures and etching morphologies of lithium niobate crystals with different Li contents grown by TSSG and double crucible Czochralski method
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Domain structures and etching morphologies of lithium niobate crystals with different Li contents grown by TSSG and double crucible Czochralski method

机译:TSSG和双坩埚直拉法生长不同Li含量的铌酸锂晶体的畴结构和刻蚀形态

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摘要

Stoichiometric lithium niobate single crystals with different Li contents have been grown both by the top-seeded solution growth (TSSG) method from potassium containing flux and by the double crucible Czochralski (DC Cz) method. Spectroscopic properties (e.g. the UV absorption edge, Raman linewidth) and the Curie temperature measurement have been used for the characterization of the crystal composition. The double crucible Czochralski method is found to be Suitable for mass production of stoichiometric LiNbO3 with Li content larger than 49.7 mol% and homogeneity of 0.03 mol%. The domain structures and etching morphologies on negative and positive c-surface were also investigated by chemical etching method. A new domain structure of three-fold symmetric sectors were observed in near-stoichiometric LiNbO3 grown by TSSG method. The straight line arrangement hillocks on negative c-surface and the net-like arrangement etch lines were observed and explained by stress etching mechanism. (C) 2004 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
机译:通过含铅助熔剂的顶晶溶液生长(TSSG)方法和双坩埚直拉法(DC Cz)方法,都已经生长了具有不同Li含量的化学计量的铌酸锂单晶。光谱特性(例如紫外线吸收边缘,拉曼线宽)和居里温度测量已用于表征晶体组成。发现双坩埚直拉法适合于批量生产化学计量的LiNbO3,其中Li含量大于49.7 mol%,均匀度为0.03 mol%。还通过化学刻蚀方法研究了在正负c面上的畴结构和刻蚀形态。在通过TSSG方法生长的接近化学计量的LiNbO3中,观察到了新的三重对称结构域结构。观察并解释了应力刻蚀机理,解释了负c面上的直线排列小丘和网状排列刻蚀线。 (C)2004 WILEY-VCH Verlag GmbH&Co. KGaA,Weinheim。

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