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Absorption enhancement in silicon nanowire-optical nanoantenna system for photovoltaic applications

机译:用于光伏应用的硅纳米线-光学纳米天线系统的吸收增强

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The rapidly growing green energy sector has prompted the search for new solutions to increase the performance of solar cells. In this area there is still room for the silicon-based photovoltaic, although the main problem is to find a way to increase the efficiency of the silicon solar cells, at the lowest possible cost. In this work we investigate the influence of a gold bowtie nanoantenna on the absorption profile of silicon nanowire. Because of the energy band gap and low effective absorption cross section, bulk silicon absorbs rather poorly in longer wavelengths of visible light and near-infrared range. Our calculations with frequency domain solver show the absorption boost in nanowire at long-wavelengths due to the coupling of the large local near-field of metallic bowtie nanoantenna to the semiconductor layer. The enhancement was observed at various levels although it was correlated with the shift of localized surface plasmon resonance thus making it dependent on the bowtie geometry. The results suggest that by incorporating metallic nanostructures as well as nanoparticles to the nanowire system, the performance of photovoltaic device can be improved thanks to greater generation of a electron-hole pairs.
机译:快速发展的绿色能源行业促使人们寻求新的解决方案来提高太阳能电池的性能。尽管主要问题是找到一种以尽可能低的成本提高硅太阳能电池效率的方法,但在该领域中仍存在硅基光伏的空间。在这项工作中,我们研究了金领结纳米天线对硅纳米线吸收轮廓的影响。由于能带隙和低有效吸收截面,块状硅在较长波长的可见光和近红外范围内吸收较差。我们的频域求解器计算结果表明,由于金属领结纳米天线的大局部近场耦合到半导体层,纳米线在长波长处的吸收增强。尽管与局部表面等离振子共振的移动相关,因此可以在各种水平上观察到这种增强,从而使其取决于领结的几何形状。结果表明,通过将金属纳米结构以及纳米颗粒结合到纳米线系统中,由于更大的电子-空穴对的产生,可以提高光伏器件的性能。

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