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Thermally-curable nanocomposite printing for the scalable manufacturing of dielectric metasurfaces

机译:热固化纳米复合材料打印,用于介电超表面的可扩展制造

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摘要

Metasurfaces consisting of artificially designed meta-atoms have been popularized recently due to their advantages of amplitude and phase of light control. However, the electron beam lithography method for metasurface fabrication has high cost and low throughput, which results in a limitation for the fabrication of metasurfaces. In this study, nanocomposite printing technology is used to fabricate high-efficiency metasurfaces with low cost. To demonstrate the efficiency of the proposed fabrication method, a metahologram is designed and fabricated using a nanocomposite. The metahologram exhibits conversion efficiencies of 48 and 35 at wavelengths of 532 and 635 nm, respectively. The nanocomposite is composed of polymers with nanoparticles, so durability tests are also performed to evaluate the effects of temperature and humidity on the metasurfaces. The test verifies that at temperatures below the glass transition temperature of the base resin, the nanostructures do not collapse, so the efficiency of the metasurfaces remains almost the same. The surrounding humidity does not affect the nanostructures at all. Hence, the durability of the nanocomposite metasurfaces can be further enhanced by replacing the base resin, and this nanocomposite printing method will facilitate practical metasurface use at low cost.
机译:由人工设计的超原子组成的超表面由于其振幅和光控制相位的优点而最近得到了普及。然而,用于超表面制造的电子束光刻方法成本高、吞吐量低,导致超表面的制备受到限制。本研究采用纳米复合打印技术制备高效超表面,成本低。为了证明所提出的制造方法的效率,使用纳米复合材料设计和制造了超全息图。在532和635 nm的波长下,metahologram分别表现出48%和35%的转换效率。纳米复合材料由带有纳米颗粒的聚合物组成,因此还进行了耐久性测试以评估温度和湿度对超表面的影响。该测试验证了在低于基础树脂的玻璃化转变温度的温度下,纳米结构不会塌陷,因此超表面的效率几乎保持不变。周围的湿度完全不会影响纳米结构。因此,通过更换基础树脂可以进一步提高纳米复合材料超表面的耐久性,这种纳米复合材料打印方法将有利于以低成本实际使用超表面。

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