首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Polarization-diverse broadband absorption enhancement in thin-film photovoltaic devices using long-pitch metallic gratings
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Polarization-diverse broadband absorption enhancement in thin-film photovoltaic devices using long-pitch metallic gratings

机译:使用长间距金属光栅的薄膜光伏器件中的极化多样化宽带吸收增强

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摘要

We numerically investigated the impact of long-pitch (>800nm) metallic gratings on the absorption enhancement in thin-film photovoltaic devices. We found that gratings with such a long pitch can simultaneously enhance the absorption of TM- and TE-polarized sunlight by inducing lateral Fabry-Perot resonances of surface plasmonpolaritons and guided modes at the same time. The grating duty cycle turned out to be the most important factor in realizing the two enhancement effects in the same spectral regime. Especially for the TM light, the combined effect of long grating pitch and duty-cycle adjustment led to the formation of three plasmonic resonances that simultaneously cover the ridge and groove surfaces. All of these produced a polarization-diverse absorption enhancement corresponding to a factor of 1:17-1:18 increase in the photocurrent over a wide range of the grating pitch.
机译:我们数值研究了长间距(> 800nm)金属光栅对薄膜光伏器件吸收增强的影响。我们发现,具有如此长的间距的光栅可以通过同时诱导表面等离振子极化子的横向Fabry-Perot共振和引导模式来同时增强TM和TE极化的太阳光的吸收。事实证明,光栅占空比是在同一光谱范围内实现两种增强效果的最重要因素。特别是对于TM光,长光栅间距和占空比调整的共同作用导致形成了三个等离子共振,同时覆盖了脊和凹槽表面。所有这些都产生了偏振分光吸收增强,其对应于在宽的光栅间距范围内光电流增加了1:17-1:18。

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