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通过阳极氧化铝模板制备的大面积全介质超表面

Large-area all-dielectric metasurface fabricated by an anodized aluminum oxide template.

作者信息

Du Bintao, Wu Zhihai, Xia Jun, Wu Jun, Tong Guodong, Zhang Hao

出版信息

Opt Express. 2021 Mar 29;29(7):10465-10470. doi: 10.1364/OE.419369.

Abstract

Transmissive metasurfaces formed by high-index dielectric materials have received great attention due to its potential in holograms, deflectors, beam converters, and flat lenses. However, a key challenge of all-dielectric metasurfaces is the limited scale and high cost in fabrication, such as electron beam lithography (EBL) and focused ion beam (FIB) lithography. In this paper, for the first time to our knowledge, an anodized aluminum oxide (AAO) template is combined with titanium dioxide (TiO) metasurface fabrication with advantages of large area (>2cm) and low cost. Using the ordered anodized aluminum oxide (AAO) as an evaporation mask, a TiO nanocylinder array is deposited through the AAO mask onto the SiO substrate. Electric and magnetic dipole resonances of TiO metasurface appear in the visible spectrum. Furthermore, we demonstrate the interaction of the CsPbBrI quantum dot (QD) emission with magnetic dipole (MD) resonance of TiO metasurface. Our results reveal that the metasurface exhibits remarkable photoluminescence (PL) enhancement of 25%. Up to now, a TiO metasurface with 2.25-cm-large area using AAO template method has never been attempted. Different from the metasurfaces fabricated by FIB and EBL, our method offers great ease for large-area metasurface fabrication, which is convenient for metasurface researchers and avoids costly facilities.

摘要

由高折射率介电材料构成的透射型超表面因其在全息图、偏转器、光束转换器和平板透镜方面的潜力而备受关注。然而,全介电超表面的一个关键挑战是制造规模有限且成本高昂,例如电子束光刻(EBL)和聚焦离子束(FIB)光刻。在本文中,据我们所知首次将阳极氧化铝(AAO)模板与二氧化钛(TiO₂)超表面制造相结合,具有大面积(>2cm)和低成本的优势。使用有序阳极氧化铝(AAO)作为蒸发掩膜,通过AAO掩膜将TiO₂纳米圆柱阵列沉积到SiO₂衬底上。TiO₂超表面的电偶极和磁偶极共振出现在可见光谱中。此外,我们展示了CsPbBrI量子点(QD)发射与TiO₂超表面磁偶极(MD)共振的相互作用。我们的结果表明,该超表面表现出高达25%的显著光致发光(PL)增强。到目前为止,从未尝试过使用AAO模板法制造面积为2.25 cm²的TiO₂超表面。与通过FIB和EBL制造的超表面不同,我们的方法为大面积超表面制造提供了极大的便利,这对超表面研究人员来说很方便,并且避免了昂贵的设备。

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