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Investigation of domain inversion and internal field in congruent lithium niobate by digital holographic interferometry

机译:数字全息干涉法研究全铌酸锂的畴反转和内场

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摘要

The dynamic and static measurements of phase variation induced by domain inversion are performed in congruent lithium niobate crystal by the digital holographic interferometry. The existence of ridge-shape phase distribution adjacent to 180° domain wall is observed. During the domain wall motion, the phase variations are not uniform but have obvious relaxations. In the static measurement, the ridge elevation can vary linearly with the uniform electric field. The reasonable assumptions are proposed to explain these effects. The phase contrast across the crystal thickness induced by the internal field is also measured by the digital holographic interferometry just after the congruent lithium niobate crystal is partially poled. The direction of applied external field is antiparallel to that of internal field, and the measured phase contrast varies linearly with the applied external field. A new internal field is obtained by this method, and named effective internal field. The distinct discrepancy between effective and equivalent internal fields is observed. We attribute this effect to the new macroscopic representation of elastic dipole components of defect complex in the crystal.
机译:通过数字全息干涉法在全铌酸锂晶体中进行由畴反转引起的相变的动态和静态测量。观察到与180°畴壁相邻的脊形相分布的存在。在畴壁运动期间,相位变化不是均匀的,但是具有明显的弛豫。在静态测量中,脊高程可以随均匀电场线性变化。提出合理的假设来解释这些影响。在将全铌酸锂晶体部分极化之后,也通过数字全息干涉法测量了由内部场引起的整个晶体厚度的相衬。施加的外部磁场的方向与内部磁场的方向反平行,并且测得的相位对比度会随施加的外部磁场线性变化。通过这种方法获得了一个新的内部字段,并将其称为有效内部字段。观察到有效和等效内部场之间的明显差异。我们将此效应归因于晶体中缺陷复合物的弹性偶极子组件的新的宏观表示。

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