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Cloaking of solar cell contacts at the onset of Rayleigh scattering

机译:在瑞利散射开始时掩盖太阳能电池的触点

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摘要

Electrical contacts on the top surface of solar cells and light emitting diodes cause shadow losses. The phenomenon of extraordinary optical transmission through arrays of subwavelength holes suggests the possibility of engineering such contacts to reduce the shadow using plasmonics, but resonance effects occur only at specific wavelengths. Here we describe instead a broadband effect of enhanced light transmission through arrays of subwavelength metallic wires, due to the fact that, in the absence of resonances, metal wires asymptotically tend to invisibility in the small size limit regardless of the fraction of the device area taken up by the contacts. The effect occurs for wires more than an order of magnitude thicker than the transparency limit for metal thin films. Finite difference in time domain calculations predict that it is possible to have high cloaking efficiencies in a broadband wavelength range, and we experimentally demonstrate contact shadow losses less than half of the geometric shadow.
机译:太阳能电池和发光二极管顶表面上的电接触会导致阴影损耗。通过亚波长孔阵列的非凡光学传输现象表明,可以使用等离激元技术来设计此类触点以减少阴影,但共振效应仅在特定波长下发生。在这里,我们描述的是通过亚波长金属线阵列增强的光传输的宽带效应,这是由于以下事实:在没有共振的情况下,金属线在较小的尺寸范围内渐近地变得不可见,而与所占器件面积的比例无关。通过联系人。当导线的厚度比金属薄膜的透明度极限大一个数量级时,就会产生这种影响。时域计算的有限差异预测在宽带波长范围内可能具有较高的掩盖效率,并且我们通过实验证明接触阴影损耗小于几何阴影的一半。

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