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3D-printed planar graded index lenses

机译:3D打印平面渐变折射率镜片

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摘要

The authors introduce two flat graded-index (GRIN) lens designs in this study. First of these is a thick lens, which was designed and fabricated by using the three-dimensional (3D)-printing technique. Second, a thin dial-a-dielectric (DaD) lens, which uses state-of-the-art artificially engineered dielectric materials for design and for which they present only the simulated results, with plans to fabricate it in the future. Both designs overcome the difficulties faced in finding desired commercial off-the-shelf materials, either for 3D-printing or for fabricating conventional GRIN lenses. The lenses comprise of several concentric dielectric rings with bespoke relative permittivities for transforming spherical waves into plane waves and vice versa. The 3D-printed thick flat lens is low-cost and light-weight, but provides broadband and high gain performance. Measurement results show that the realised gain of the thick lens is 9-11 dB over the frequency band of 12-18 GHz. The designed DaD lens has the desirable characteristics of low loss, low reflection and broadband properties.
机译:在这项研究中,作者介绍了两种平面渐变折射率(GRIN)镜片设计。首先是厚透镜,它是使用三维(3D)打印技术设计和制造的。第二,一种薄的介电常数透镜(DaD),它使用最先进的人工工程介电材料进行设计,并且仅显示模拟结果,并计划在将来进行制造。两种设计都克服了寻找所需的商用现货材料所面临的困难,无论是用于3D打印还是用于制造常规GRIN透镜。透镜由几个同心的介电环组成,介电环具有定制的相对介电常数,用于将球面波转换为平面波,反之亦然。 3D打印的厚型平板镜头虽然价格低廉,重量轻,但是却提供了宽带和高增益性能。测量结果表明,厚透镜在12-18 GHz的频带上实现的增益为9-11 dB。设计的DaD透镜具有低损耗,低反射和宽带特性的理想特性。

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