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Laguerre-Gaussian beam shaping by binary phase plates as illumination sources in micro-optics

机译:通过二元相板作为微光学中的照明源的Laguerre-Gaussian光束整形

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摘要

The lack of intensity in the central region of Laguerre-Gaussian beams reduces their applicability as illumination sources. For this reason, it is usual to shape a Laguerre-Gaussian beam to a nearly Gaussian beam using a binary phase mask. The behavior of this rectified Laguerre-Gaussian beam is analyzed in this work in the Fresnel regime. A comparison between diverse Laguerre-Gaussian beams with rectified Laguerre-Gaussian beams shows that there appear two different regions along the propagation axis: first is a transition region (for lower distances) with a flat intensity distribution, and next is a second region (for longer distances) where the rectified Laguerre-Gaussian tends to a Gaussian shape. The results of this work are very valuable for the use of this kind of beam in micro-optical applications.
机译:Laguerre-Gaussian光束中心区域强度不足,降低了其作为照明源的适用性。因此,通常使用二进制相位掩模将拉盖尔-高斯光束成形为接近高斯光束。在这项工作中,在菲涅耳状态下分析了这种整流的拉盖尔-高斯光束的行为。比较不同的拉盖尔-高斯光束与整流拉盖尔-高斯光束,发现沿传播轴出现两个不同的区域:第一个是强度分布平坦的过渡区域(用于较小距离),第二个是第二个区域(用于距离越远),经过校正的拉盖尔-高斯分布趋向于高斯形状。这项工作的结果对于在微光学应用中使用这种光束非常有价值。

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