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Evaluation of Solar Cell Using Terahertz Time- Domain Spectroscopy

机译:使用太赫兹时域光谱法评估太阳能电池

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Terahertz time-domain spectroscopy (THz-TDS) has been used to investigate the optical properties of mono silicon solar cell. The sample was optically excited using continuous-wave (CW) light of wavelengths of 800 nm and 365 nm and the carrier density and mobility were extracted from the THz-TDS data by fitting with the simple Drude model. The conductivity shows nonlinear increase with the optical excitation power. The mobility of the photo-excited carriers also increases nonlinearly with the CW light power. However, the mobility shows tendency to saturate with the increase of illumination power, which can be explained by carrier trapping effect to the impurity states existing in the band-gap region of the base material of solar cell. In addition, it is observed that the carrier density and mobility are smaller for 365 nm light illumination due to surface recombination.
机译:太赫兹时域光谱(THz-TDS)已用于研究单晶硅太阳能电池的光学特性。使用波长为800 nm和365 nm的连续波(CW)光激发样品,并通过使用简单的Drude模型拟合从THz-TDS数据中提取载流子密度和迁移率。电导率随光激发功率呈非线性增加。受激载流子的迁移率也随CW光功率非线性增加。然而,迁移率显示出随着照明功率的增加而饱和的趋势,这可以通过对太阳能电池的基材的带隙区域中存在的杂质态的载流子俘获效应来解释。另外,观察到由于表面重组,对于365nm光照射,载流子密度和迁移率较小。

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