首页> 外文会议>Conference on Photonic Fiber and Crystal Devices: Advnaces in Materals and Innovations in Device Applications >Evaluation and control of the dopant distribution in a Nd:LiNbO3 fiber grown from the melt by the edge-defined film-fed growth (EFG) method
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Evaluation and control of the dopant distribution in a Nd:LiNbO3 fiber grown from the melt by the edge-defined film-fed growth (EFG) method

机译:Nd掺杂剂分布的评价与控制Nd:LiNbO3纤维从熔体生长边缘定义的膜喂养生长(EFG)方法

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The quality of the fiber depends to a considerable extent on homogeneity, i.e., on the distribution of both special added and detrimental impurities A non-uniform distribution of such impurities along the fiber length and cross-section leads to non-uniform spatial, electrical and optical properties of the crystal Variations of the concentration of impurities are determined by the processes that take place during the fiber manufacturing. In order to eliminate non-uniformities, crystal growth experts have concentrated on the analysis of the mass transport, heat transfer, impurity distribution and shape of the crystal-melt interface.In order to evaluate the dopant distribution, a stationary numerical model - including incompressible fluid flow in the Boussinesq approximation, heat and mass transfer, and surface tension-driven flows due to the temperature gradient along the liquid free surface (meniscus) - is developed using the finite element method. A two-dimensional axis-symmetric model is implemented with COMSOL Multiphysics 3.3 software, and the Nd impurity distribution dependence on the pulling rate Vo and on the radius of the capillary channel Rcap in a LiNbO3 fiber grown from the melt by the EFG method is determined Using this dependence, the optimal v0 and Rcap which assure the best impurity distribution are chosen.
机译:纤维的质量取决于均匀性的相当程度,即,在沿纤维长度和横截面的这种杂质的这种杂质的不均匀分布导致不均匀的空间,电气和横截面的分布杂质浓度的晶体变化的光学性质由纤维制造期间发生的方法确定。为了消除非均匀性,晶体生长专家集中在分析的分析,传热,杂质分布和晶体熔体接口的形状。为了评估掺杂剂分布,静止数值模型 - 包括不可压缩使用有限元方法开发出Bousinesq近似,热量和传质,以及由于液体自由表面(弯月面)的温度梯度而导致的表面张力驱动流动。用COMSOL多发性3.3软件实现二维轴对称模型,并且确定了从通过EFG方法生长的LINBO3纤维中的拉伸速率VO和毛细管通道RCAP的ND杂质分布依赖性使用这种依赖性,选择了确保最佳杂质分布的最佳V0和RCAP。

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