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Section IIIh: Post deadline papers

Optical and non-linear optical investigations in LiNbO3:Mg and LiNbO3:Zn

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Pages 345-350 | Published online: 10 Feb 2011

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Xu Wusheng, Wang Rui, Zhen Xihe, Zhang Wanlin, Chen Xiaojun, Wang Zhengping & Zhouguangyong. (2001) Photodamage resistance properties and application of In:LiNbO3 . Ferroelectrics 253:1, pages 153-159.
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Yuncheng Ge & Chaozhong Zhao. (1998) Temperature Dependent Raman Scattering Study on Linbo3:Zn Crystals. Spectroscopy Letters 31:8, pages 1649-1658.
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Jianguo Zhu, Guanfeng Xu, Xiu Wang & Dingquan Xiao. (1997) Effect of doping ions on optical absorption properties of lithium niobate crystals. Ferroelectrics 195:1, pages 225-228.
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M. Wóuhlecke, T. Volk & H. Donnerberg. (1997) On the role of intrinsic clusters in damage-resistant LiNbO3 . Ferroelectrics Letters Section 22:3-4, pages 53-58.
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J.M. Cabrera, J. Olivares, M. Carrascosa, J. Rams, R. Müller & E. Diéguez. (1996) Hydrogen in lithium niobate. Advances in Physics 45:5, pages 349-392.
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T. Volk, M. Wöhlecke, N. Rubinina, A. Reichert & N. Razumovski. (1996) Optical-damage-resistant impurities (Mg, Zn, In, Sc) in lithium niobate. Ferroelectrics 183:1, pages 291-300.
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T.R. Volk & N.M. Rubinina. (1992) A new optical damage resistant impurity in lithium niobate crystals: Indium. Ferroelectrics Letters Section 14:1-2, pages 37-43.
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T.R. Volk, M.A. Ivanov, P.Ya. Shchapov & N.M. Rubinina. (1992) Charge transport and X-ray induced absorption spectra in optical damage resistant LiNbO3 crystals. Ferroelectrics 126:1, pages 185-190.
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T.R. Volk, M.A. Ivanov, V.I. Pryalkin & N.M. Rubinina. (1992) Photorefractive and nonlinear-optical properties of optical damage resistant LiNbO:Zn crystals. Ferroelectrics 126:1, pages 57-62.
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Articles from other publishers (50)

Rui Huang, Mingzhi Tang, Wanyu Kan, Hao Xu, Kai Wu, Zhiyong Wang & Hui Li. (2023) Single-crystalline LiNbO 3 integrated onto Si-based substrates via Ar plasma-activated low-temperature direct bonding . Journal of Physics D: Applied Physics 57:1, pages 015102.
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Valentin G. Grachev & Galina I. Malovichko. (2021) Structures of Impurity Defects in Lithium Niobate and Tantalate Derived from Electron Paramagnetic and Electron Nuclear Double Resonance Data. Crystals 11:4, pages 339.
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Oswaldo Sánchez-Dena, Sergio David Villalobos-Mendoza, Rurik Farías & Cesar David Fierro-Ruiz. (2020) Lithium Niobate Single Crystals and Powders Reviewed—Part II. Crystals 10:11, pages 990.
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László Kovács, Laura Kocsor, Éva Tichy-Rács, Krisztián Lengyel, László Bencs & Gábor Corradi. (2019) Hydroxyl ion probing transition metal dopants occupying Nb sites in stoichiometric LiNbO 3 . Optical Materials Express 9:12, pages 4506.
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Ling Zhu, Dahuai Zheng, Shahzad Saeed, Shuolin Wang, Hongde Liu, Yongfa Kong, Shiguo Liu, Shaolin Chen, Ling Zhang & Jingjun Xu. (2018) Photorefractive Properties of Molybdenum and Hafnium Co-Doped LiNbO3 Crystals. Crystals 8:8, pages 322.
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J.G. Murillo, G. Herrera, A. Vega-Rios, S. Flores-Gallardo, A. Duarte-Moller & J. Castillo-Torres. (2016) Effect of Zn doping on the photoluminescence properties of LiNbO3 single crystals. Optical Materials 62, pages 639-645.
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K. Lengyel, Á. Péter, L. Kovács, G. Corradi, L. Pálfalvi, J. Hebling, M. Unferdorben, G. Dravecz, I. Hajdara, Zs. Szaller & K. Polgár. (2015) Growth, defect structure, and THz application of stoichiometric lithium niobate. Applied Physics Reviews 2:4, pages 040601.
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Márta Unferdorben, Zsuzsanna Szaller, Ivett Hajdara, János Hebling & László Pálfalvi. (2015) Measurement of Refractive Index and Absorption Coefficient of Congruent and Stoichiometric Lithium Niobate in the Terahertz Range. Journal of Infrared, Millimeter, and Terahertz Waves 36:12, pages 1203-1209.
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Vadim G. Kessler. 2015. The Sol‐Gel Handbook. The Sol‐Gel Handbook 195 224 .
Dahuai Zheng, Yongfa Kong, Shiguo Liu, Jiaying Yao, Ling Zhang, Shaolin Chen & Jingjun Xu. (2015) The photorefractive characteristics of bismuth-oxide doped lithium niobate crystals. AIP Advances 5:1.
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Yang Ming, Ai-Hong Tan, Zi-Jian Wu, Zhao-Xian Chen, Fei Xu & Yan-Qing Lu. (2014) Tailoring entanglement through domain engineering in a lithium niobate waveguide. Scientific Reports 4:1.
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Yannan Qian, Rui Wang, Chao Xu, Wei Xu, Xiaohong Wu, Lili Xing & Yanling Xu. (2012) The influence of Zn2+ ion on the 1.5μm laser properties of LiNbO3 crystal heavily doped with Er3+ ion. Optics & Laser Technology 44:7, pages 2297-2301.
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De-Long Zhang, Ping-Rang Hua, Liang Sun, Yu-Heng Xu & E.Y.B. Pun. (2008) Vapor transport equilibration-induced formation of micron-sized ErNbO4 precipitates in Zn/Er-codoped LiNbO3 crystals. Materials Science and Engineering: C 28:8, pages 1289-1296.
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De-Long Zhang, Ping-Rang Hua, Yu-Heng Xu & E. Y. B. Pun. (2007) Judd-Ofelt analysis of spectroscopic property of Er3+ in congruent and near-stoichiometric Zn∕Er-codoped LiNbO3 crystals. Journal of Applied Physics 101:5.
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XIHE ZHEN, QIANG LI & YUHENG XU. (2012) OPTICAL ABSORPTION AND OH - TRANSMISSION SPECTRA IN Mg:Er:LiNbO 3 CRYSTALS . Modern Physics Letters B 20:08, pages 439-444.
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Qingxin Meng, Xiudong Sun, Chunfeng Hou, Suhua Luo & Zhongxiang Zhou. (2005) The study of self-erasing phenomenon in reduced Zn:Fe:LiNbO3 crystal. Optical Materials 27:12, pages 1869-1873.
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Xihe Zhen, Qiang Li, Lin Wang & Yuheng Xu. (2005) Growth and threshold effect of Sc:Er:LiNbO3 crystals. Journal of Crystal Growth 284:1-2, pages 270-274.
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Xiudong Sun, Qingxin Meng, Chunfeng Hou, Dewei Gong, Suhua Luo & Zhongxiang Zhou. (2005) The effect of reduction treatment on the photorefractive properties of Zn:Fe:LiNbO3 crystal. Optics Communications 247:1-3, pages 233-237.
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Haijun Qiao, Jingjun Xu, Guoquan Zhang, Xinzheng Zhang, Qian Sun & Guangyin Zhang. (2004) Ultraviolet photorefractivity features in doped lithium niobate crystals. Physical Review B 70:9.
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T Zhang, B Wang, S.Q Fang, D.C Ma, Y.Q Zhao & Y.H Xu. (2004) Optical damage resistance of In:Fe:LiNbO3 crystals related to the defect structure. Materials Letters 58:24, pages 3074-3078.
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Yongfa Kong, Wanlin Zhang, Jingjun Xu, Wenbo Yan, Hongde Liu, Xiang Xie, Xiaochun Li, Lihong Shi & Guangyin Zhang. (2004) The OH− absorption spectra of low doped lithium niobate crystals. Infrared Physics & Technology 45:4, pages 281-289.
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