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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Design of plasmonic solar cells combining dual interface nanostructure for broadband absorption enhancement
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Design of plasmonic solar cells combining dual interface nanostructure for broadband absorption enhancement

机译:结合双界面纳米结构的等离子太阳能电池设计,用于宽带吸收

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摘要

We propose an ultra-thin film solar cell structure combining front semicircular dielectric grooves and back trapezoidal metal reflector. The back trapezoidal metal structure traps light by the excitation of plasmonic modes and the outstanding scattering effect of our optimized shape to enhance the absorption at long wavelengths. The front groove structure boosts absorption at short wavelengths by the mechanisms of Fabry-Perot resonance, scattering and the interaction with back plasmonic structure. The total absorption efficiency over the entire spectrum in 100 nm thick active layer is as high as 78.4% under normal incident light and it can also be maintained in a high level even if the incident angle varies from -60° to 60°. Broadband absorption, efficiency enhancement and insensitivity to the angle indicate the dual interface nanostructure to be a practical reference.
机译:我们提出了一种超薄膜太阳能电池结构,其结合了前半圆形介电凹槽和后梯形金属反射器。背面梯形金属结构通过等离子体激元模式的激发以及我们优化形状的出色散射效果来捕获光,从而增强了在长波长下的吸收。前槽结构通过Fabry-Perot共振,散射以及与后等离激元结构的相互作用,促进了短波吸收。在法向入射光下,在100 nm厚的有源层中,整个光谱的总吸收效率高达78.4%,即使入射角在-60°到60°之间变化,也可以保持在高水平。宽带吸收,效率增强和对该角度不敏感表明双界面纳米结构是实际的参考。

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