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首页> 外文期刊>Sensors and Actuators, A. Physical >A simple numerical method to study the far-field diffraction of optical MEMS devices with a large array and complex element geometry
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A simple numerical method to study the far-field diffraction of optical MEMS devices with a large array and complex element geometry

机译:研究具有大阵列和复杂元素几何形状的光学MEMS器件的远场衍射的简单数值方法

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摘要

A simple numerical method based on MATLAB (The MathWorks, Inc.) is presented for studying the far-field diffraction of some optical MEMS devices with a large array and complex element geometry. The method avoids the theoretical solution by defining the working surfaces according to different apertures. Through a practical example of a grating optical modulator, the experimental tests are in good agreement with the simulation performed by using the proposed method. Then, some other optical MEMS devices with different structure configurations are also simulated. All these results reveal that the method proposed is efficient and effective, yet easy to operate. It is extremely suitable for simulating and analyzing such optical MEMS devices with planar reflective or transmissive optical working surfaces.
机译:提出了一种基于MATLAB(The MathWorks,Inc.)的简单数值方法,用于研究某些具有大阵列和复杂元素几何形状的光学MEMS器件的远场衍射。该方法通过根据不同的孔径定义工作表面来避免理论上的解决方案。通过一个光栅光学调制器的实际例子,实验测试与使用所提出的方法进行的仿真非常吻合。然后,还模拟了其他具有不同结构配置的光学MEMS器件。所有这些结果表明,所提出的方法是有效和有效的,但易于操作。它非常适合于模拟和分析具有平面反射或透射光学工作表面的光学MEMS器件。

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