Multi-wavelength simulations of the wavefront deformation of the optical wave passing through the domain patterns in ferroelectric single crystals

K. Steiger, P. Mokry
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Abstract

The paper presents analysis of the wavefront deformations of the optical waves transmitted through the ferroelectric single crystals with particular types of domain patterns by means of the numerical simulations. It is known that domain patterns influence the macroscopic properties of ferroelectric polydomain single crystals to a great extent. It is known that the domain spacing in ferroelectric single crystals can span the range from few tenths of nanometers to centimeters. Finally, it is known that measurements of the wavefront deformation can serve as input data for tomographic methods. In this paper, we perform exact numerical computations of the wavefront deformations of the optical wave passing through the ferroelectric domain patterns for different wavelengths. The considered simulations methods are based on solving the wave equation for the electromagnetic field. The computed numerical results are compared with simple analytical estimates. The key result of the paper is the benchmark of the limits for the three-dimensional observations of the ferroelectric domain patterns using digital holographic tomography.
通过铁电单晶畴图的光波波前变形的多波长模拟
本文采用数值模拟的方法,分析了具有特定畴型的铁电单晶传输光波时的波前变形。畴型在很大程度上影响铁电多畴单晶的宏观性能。众所周知,铁电单晶中的畴间距可以跨越几十纳米到厘米的范围。最后,我们知道,波前变形的测量可以作为层析成像方法的输入数据。在本文中,我们对不同波长的光通过铁电畴图时的波前变形进行了精确的数值计算。所考虑的模拟方法是基于求解电磁场的波动方程。数值计算结果与简单的分析结果进行了比较。本文的关键结果是利用数字全息层析成像技术对铁电畴图形进行三维观测的极限基准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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