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High Convergence Efficiency Design of Flat Fresnel Lens with Large Aperture

机译:大光圈平面菲涅尔透镜的高会聚效率设计

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As a part of the solar pumped laser project, this paper optimized a circle-shaped Fresnel lens with large aperture. It was a simulation design of light tracing conducted in Matlab. This paper analyzed parameters of light spot size, light intensity distribution and optical efficiency under four conditions-monochromatic parallel light, parallel spectrum light, divergent monochromatic light and sunlight. The size of optimized Fresnel lenses was 1000mm× 1000mm. It was made of polymethyl methacrylate (PMM A). Beams of 550nm wavelength was used and Fresnel reflection was considered. When the coaxial annular rings have the same width of 0.3mm with focus length of 1200mm, the result indicated that the optimized lens could converge sunlight to a 78.7% optical efficiency within diffraction limit of 11.8mm. However, under the same condition, the Fresnel lens that based on spherical lens cutting could only obtain a 30.4% optical efficiency. This result showed that by optimization, Fresnel lens could obtain higher optical efficiency and light intensity.
机译:作为太阳能泵浦激光项目的一部分,本文对具有大光圈的圆形菲涅耳透镜进行了优化。这是在Matlab中进行的光跟踪的模拟设计。本文分析了单色平行光,平行光谱光,发散单色光和日光四个条件下的光斑尺寸,光强分布和光效率的参数。优化的菲涅耳透镜的尺寸为1000mm×1000mm。它由聚甲基丙烯酸甲酯(PMM A)制成。使用550nm波长的光束并考虑菲涅耳反射。当同轴环形环的宽度为0.3mm且焦距为1200mm时,结果表明优化的透镜可​​以在11.8mm的衍射极限内将太阳光会聚到78.7%的光学效率。但是,在相同条件下,基于球面切割的菲涅耳透镜只能获得30.4%的光学效率。该结果表明,通过优化,菲涅耳透镜可以获得更高的光学效率和光强度。

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