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Plasmonic fractals: ultrabroadband light trapping in thin film solar cells by a Sierpinski nanocarpet

机译:等离子体等分形:Sierpinski纳米地毯将超宽带光捕获在薄膜太阳能电池中

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摘要

Plasmonic Sierpinski nanocarpet as back structure for a thin film Si solar cell is investigated. We demonstrate that ultra-broadband light trapping can be obtained by placing square metallic nanoridges with Sierpinski pattern on the back contact of the thin film solar cell. The multiple-scale plasmonic fractal structure allows excitation of localized surface plasmons and surface plasmon polaritons in multiple wavelengths leading to obvious absorption enhancements in a wide frequency range. Full wave simulations show that 109 % increase of the short-circuit current density for a 200 nm thick solar cell, is achievable by the proposed fractal back structure. The amount of light absorbed in the active region of this cell is more than that of a flat cell with semiconductor thickness of 1,000 nm.
机译:研究了等离子Sierpinski纳米地毯作为薄膜Si太阳能电池的背面结构。我们证明,通过在薄膜太阳能电池的背面触点上放置具有Sierpinski图案的方形金属纳米脊可以获得超宽带光捕获。多尺度等离子体分形结构允许激发多个波长的局部表面等离激元和表面等离激元极化子,从而在较宽的频率范围内实现明显的吸收增强。全波模拟显示,通过提出的分形背面结构,对于200 nm厚的太阳能电池,短路电流密度可增加109%。在该单元的有源区中吸收的光的量大于具有半导体厚度为1,000 nm的平面单元的光的量。

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