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首页> 外文期刊>Journal of Laser Micro/Nanoengineering >Homogeneous Intensity within the Rayleigh Length and Enhanced Depth of Focus for Gaussian Beams
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Homogeneous Intensity within the Rayleigh Length and Enhanced Depth of Focus for Gaussian Beams

机译:瑞利长度内的均匀强度和高斯光束的增强深度

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The smallest width of a Gaussian beam at the focal plane is called waist and is only limited by the diffraction limit of the light. The waist determines the Rayleigh length which is the distance from the waist at which the width of the Gaussian beam increases by a factor of 21/2 or the intensity decreases by a factor of 2. With regard to laser material processing, these changes in spot size and intensity are typically undesirable. For example, variations in surface profiles or thickness of the processed material could require adjustment of focus. In this simulation study, we present a beam shaping method based on a development of the Fundamental Beam Mode Shaper (FBS) concept for enhanced depth of focus. Using this concept, an enhancement of Rayleigh length of 20% and a more homogeneous peak intensity around the focal plane is achieved.
机译:焦平面上的高斯光束的最小宽度被称为腰部,并且仅受光的衍射极限限制。腰部决定了沿腰部的沿腰部的距离长度,即高斯梁的宽度增加的距离21/2或强度减小了2.关于激光材料处理,这些变化尺寸和强度通常是不希望的。例如,处理材料的表面轮廓或厚度的变化可能需要调整焦点。在该仿真研究中,我们介绍了一种基于基本梁模式Shaper(FBS)概念的开发的光束整形方法,用于增强焦点深度。使用该概念,实现了思考长度为20%的瑞利长度和围绕焦平面的更均匀峰值强度的增强。

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