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Simulation of Optical surfaces and Their PSD Study

机译:光学表面的仿真及其PSD研究

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摘要

The performance of a optical component is greatly dependent on its surfaces. There are many ways to measure and evaluate a surface so far, but actually no one knows exactly what a "real" surface likes, and thus makes some measurement unexplainable. This paper develops a way to construct various synthetic surfaces. Referred to actual AFM measurement, regular or irregular surfaces can be created and studied. Bumps, scratches, granules, profile errors and other construction elements can be added to form a very complicated virtual surface. The number, size and distribution of these elements can be changed, and if necessary, the surface roughness can be controlled in a specialized range. As these surfaces are created synthetically, we know exactly what construction these surface contain. The height data of created virtual surfaces can be transferred into the file that AFM instrument can read and handle. As a typical example, a very complicated surface is created step by step in this paper, and its PSD for each step are calculated. This process mikes it very clear how the surface component element affect its PSD function, and is benefit to our better understanding of real surface construction.
机译:光学组件的性能在很大程度上取决于其表面。到目前为止,有许多方法可以测量和评估表面,但实际上没有人确切知道“真实”表面的样貌,因此无法进行某些测量。本文提出了一种构造各种合成表面的方法。参照实际的AFM测量,可以创建和研究规则或不规则表面。可以添加凸点,划痕,颗粒,轮廓误差和其他构造元素,以形成非常复杂的虚拟表面。这些元素的数量,大小和分布可以改变,并且如果必要,可以将表面粗糙度控制在特定范围内。由于这些表面是合成创建的,因此我们确切知道这些表面包含的构造。可以将创建的虚拟表面的高度数据传输到AFM仪器可以读取和处理的文件中。作为一个典型示例,本文逐步创建了一个非常复杂的曲面,并计算了每个步骤的PSD。此过程非常清楚地表明表面组成元素如何影响其PSD功能,并且有利于我们更好地了解实际表面构造。

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