首页> 外文期刊>Journal of Crystal Growth >Ionic impurity transport and partitioning at the solid-liquid interface during growth of lithium niobate under an external electric field by electric current injection
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Ionic impurity transport and partitioning at the solid-liquid interface during growth of lithium niobate under an external electric field by electric current injection

机译:注入电流在外部电场作用下铌酸锂的生长过程中离子杂质在固液界面的迁移和分配

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Transport of ionic species in the melt and their partitioning at the solid-liquid interface during growth of lithium niobate was studied under the influence of intrinsic and external electric fields. A Mn-doped lithium niobate (Mn:LiNbO_3) single crystal was grown via the micro-pulling-down (μ-PD) method with electric current injection at the interface. Mn ions were accumulated or depleted at the interface, depending on the sign of the injected current. The electric current injection induced an interface electric field as well as a Coulomb force between the interface and Mn ions. The electric field modified the transportation of Mn ions and their partitioning into the crystal, while the Coulomb force led to adsorption or rejection of Mn ions at the interface in addition to Mn concentration change due to the electric field. Effect of the Coulomb force was often observed to be larger on Mn concentration at the interface than that of the induced electric field, and dominated the redistribution of Mn in the solid. It has been experimentally and analytically shown that Mn concentration partitioned into the crystal can be obtained by multiplying Mn concentration at the interface by a field-modified partition coefficient, k_(EO). instead of the conventional equilibrium partition coefficient, ko.
机译:在本征和外部电场的影响下,研究了铌酸锂生长过程中离子物质在熔体中的迁移及其在固液界面的分配。通过微下拉法(μ-PD),在界面处注入电流,生长了掺锰的铌酸锂(Mn:LiNbO_3)单晶。取决于注入电流的符号,Mn离子在界面处积累或耗尽。电流注入引起界面电场以及界面与Mn离子之间的库仑力。电场改变了Mn离子的传输及其在晶体中的分配,而库仑力除了由于电场引起的Mn浓度变化外,还导致界面处Mn离子的吸附或排斥。通常观察到库仑力对界面处Mn浓度的影响大于感应电场的影响,并且影响了Mn在固体中的重新分布。实验和分析表明,可以通过将界面处的Mn浓度乘以场修正的分配系数k_(EO)来获得分配到晶体中的Mn浓度。代替常规的平衡分配系数ko。

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