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Light Trapping with Silicon Light Funnel Arrays

机译:硅漏斗阵列的光陷印

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摘要

Silicon light funnels are three-dimensional subwavelength structures in the shape of inverted cones with respect to the incoming illumination. Light funnel (LF) arrays can serve as efficient absorbing layers on account of their light trapping capabilities, which are associated with the presence of high-density complex Mie modes. Specifically, light funnel arrays exhibit broadband absorption enhancement of the solar spectrum. In the current study, we numerically explore the optical coupling between surface light funnel arrays and the underlying substrates. We show that the absorption in the LF array-substrate complex is higher than the absorption in LF arrays of the same height (~10% increase). This, we suggest, implies that a LF array serves as an efficient surface element that imparts additional momentum components to the impinging illumination, and hence optically excites the substrate by near-field light concentration, excitation of traveling guided modes in the substrate, and mode hybridization.
机译:硅漏斗是相对于入射照明呈倒锥状的三维亚波长结构。光漏斗(LF)阵列由于其光捕获能力而可以用作有效的吸收层,而光捕获能力则与高密度复杂Mie模式的存在相关。具体地,光漏斗阵列表现出太阳光谱的宽带吸收增强。在当前的研究中,我们在数值上探讨了表面光漏斗阵列与下面的基板之间的光学耦合。我们表明,LF阵列-底物复合物中的吸收高于相同高度的LF阵列中的吸收(增加约10%)。我们建议这暗示着LF阵列是一种有效的表面元件,可将附加的动量分量赋予入射的照明,因此可通过近场光聚集,激发基板中的行进引导模和模式来光学激发基板。杂交。

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