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A Highly Efficient Visible Absorber Coating on a Curved Substrate

机译:在弯曲基材上具有高效的可见吸收器涂层

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In this study, we propose and fabricate a perfect absorber on a planar substrate using alternate silicon dioxide and ultrathin metallic lossy chromium (Cr) films. Furthermore, we transfer the absorber to a curved substrate via an optimization design of symmetric structures. The absorber exhibits a highly efficient absorption and large incident-angular tolerance characteristics in the whole visible region. We investigate each layer contribution to the absorption theoretically, and find that ultrathin (~5 nm) lossy Cr films play a dominant absorptive role. Using the effective interface method, we calculate the phase difference on the lossy Cr front surface. It is close to the destructive interference condition, from which we clarify why the proposed structures can produce a highly efficient absorption.
机译:在这项研究中,我们在使用替代二氧化硅和超薄金属损伤铬(Cr)膜上的平面基板上提出并制造了完美的吸收器。此外,我们通过对称结构的优化设计将吸收器转移到弯曲基板。吸收器在整个可见区域中表现出高效的吸收和大的入射角公差特性。我们从理论上调查每个层对吸收的贡献,发现超薄(〜5nm)有损的Cr薄膜发挥着占主导地层的吸收作用。使用有效接口方法,我们计算有损CR前表面上的相位差。它接近破坏性干扰条件,从中阐明了所提出的结构可以产生高效的吸收。

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