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Plasmonic organic thin-film solar cell: light trapping by using conformal vs. non-conformal relief gratings

机译:等离子体有机薄膜太阳能电池:使用保形与非共形浮雕光栅的光捕获

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Theoretical study of light management in thin film organic photovoltaic cell that utilizes diffraction coupling to guided waves is presented. As a model system, a regular solar cell geometry with P3HT:PCBM active layer, transparent ITO electrode and Al backside electrode is used. The paper discusses enhancement of absorption of incident photons selectively in the active layer by the interplay of surface plasmon polariton and optical waveguide waves, the effect on the profile of their field and damping that affects the spatial distribution of dissipated light energy in the layer structure. The model shows that for optimized grating period and modulation depth the number of absorbed photons in the active layer can be increased by 24 per cent. The comparison of the geometry with conformal and non-conformally corrugated layers reveals that the conformal structure outperforms the non-conformal in the enhancing of photon absorption in the wavelength range of 350-800 nm.
机译:呈现利用衍射耦合与引导波的薄膜有机光伏电池光管理的理论研究。作为模型系统,使用具有P3HT:PCBM有源层,透明ITO电极和Al背面电极的常规太阳能电池几何形状。本文讨论了通过表面等离子体极谱和光波导波的相互作用,对主动层中选择性地在活性层中吸收吸收的吸收,对它们的田间轮廓的曲线和阻尼的曲线影响层结构中的散射光能的空间分布的影响。该模型表明,对于优化的光栅周期和调制深度,有源层中的吸收光子的数量可以增加24%。具有共形和非共形状波纹层的几何形状的比较显示,保形结构在350-800nm的波长范围内的增强中的增强中的非共形性呈现。

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