Structure and optical damage resistance of In:Yb:Er:LiNbO3 crystals
β Scribed by Zhenghua Hu; Peng Guo; Jingying Li; Xihe Zhen
- Publisher
- John Wiley and Sons
- Year
- 2007
- Tongue
- English
- Weight
- 153 KB
- Volume
- 42
- Category
- Article
- ISSN
- 0232-1300
No coin nor oath required. For personal study only.
β¦ Synopsis
Abstract
A series of In:Yb:Er:LiNbO~3~ crystals have been grown. The UVβVis absorption spectra and Infrared (IR) transmission spectra were measured and discussed in terms of the spectroscopic characterizations and the defect structure of the In:Yb:Er:LiNbO~3~ crystals. The optical damage resistance was characterized by the transmitted beam pattern distortion method. The optical damage resistance of In (3.0mol %):Yb:Er:LiNbO~3~ crystal is one order of magnitude higher than that of other crystal. The dependence of the optical damage resistance on the defect structure was studied. (Β© 2007 WILEYβVCH Verlag GmbH & Co. KGaA, Weinheim)
π SIMILAR VOLUMES
LiNbO 3 crystals has been grown. The crystal composition and phase are analyzed by X-ray diffration. The optical damage resistance ability of Zr: LiNbO 3 crystals is studied by the SΓ©narmont compensation method and the transmitted beam pattern distortion method. The saturated value of the birefringe
Mg:Ce:Fe:LiNbO 3 crystals were prepared with fixed concentrations of Fe 2 O 3 and CeO 2 , and differing concentrations of MgO by the Czochralski technique. Their infrared transmission spectra were measured in order to investigate their defect structures and their optical damage resistance was charac
## Abstract In:Fe:Cu:LiNbO~3~ crystals were grown in air by the Czochralski technique with various [Li]/[Nb] ratios of 0.946, 1.050, 1.200, and 1.380 in melt. Based on the ICPβAES (inductively coupled plasma atomic emission spectrometry) analyzed results, the chemical formula of the tripleβdoped In