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Fabrication of Advanced Glass Light Pipes for Solar Concentrators

机译:用于太阳能集中器的高级玻璃光导管的制造

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New applications for light pipes include waveguiding solar concentrators. For practical applications, achieving high optical transmission is critical so low-absorption glass is preferred over other materials, and the fabrication approach must show promise for scalability and low manufacturing costs. We present results for fabricated fused silica light pipes using femtosecond laser irradiation followed by chemical etching. After compensating for Fresnel losses and averaging over incident angles (in air) from 0?to 25? transmission efficiencies of 96% and higher were measured for light pipes up to 20mm in length and 1mm2 cross-sectional area. The feasibility of creating glass light pipes with advanced geometries such as angled facets, tapering of the cross-section along the length, and combiners with micron-scale precision is also demonstrated. Tapered light pipes with concentrating factors up to 7x were fabricated, as well as cascaded structures with 45?angled facets to couple light from multiple lens array elements into a common light pipe.
机译:导光管的新应用包括波导太阳能聚光器。对于实际应用而言,实现高光学透射率至关重要,因此低吸收率玻璃比其他材料更受青睐,并且制造方法必须显示出可扩展性和低制造成本的希望。我们介绍了使用飞秒激光辐照然后化学蚀刻制造的熔融石英光导管的结果。补偿菲涅耳损耗并平均入射角(空气中)从0°到25°补偿后。对于长度不超过20mm,横截面积不超过1mm2的光导管,其传输效率达到96%或更高。还证明了创建具有先进几何形状(例如,成角度的小平面,沿长度方向的横截面逐渐变细)以及具有微米级精度的合束器的玻璃导光管的可行性。制造了聚光系数高达7倍的锥形光管,以及具有45个倾斜小面的级联结构,以将来自多个透镜阵列元件的光耦合到一个公共光管​​中。

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