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Experimental Measurement of Minority Carriers Effective Lifetime in Silicon Solar Cell Using Open Circuit Voltage Decay under Magnetic Field in Transient Mode

机译:瞬态模式下磁场下磁极太阳能电池在硅太阳能电池中有效寿命的实验测量

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This manuscript presents a simple method for excess minority carriers' lifetime measurement within the base region of p-n junction polycrystalline solar cell in transient mode. This work is an experimental transient 3-Dimensionnal study. The magnitude of the magnetic field B is varied from 0 mT to 0.045 mT. Indeed, the solar cell is illuminated by a stroboscopic flash with air mass 1.5 and under magnetic field in transient state. The experimental details are assumed in a figure. The procedure is outlined by the Open Circuit Voltage Decay analysis. Effective minority carrier life-time is calculated by fitting the linear zone of the transient voltage decay curve because linear decay is an ideal decay. The kaleidagraph software permits access to the slope of the curve which is inversely proportional to the lifetime. The external magnetic effects on minority carriers' effective lifetime is then presented and analyzed. The analysis shows that the charge carrier's effective lifetime decrease with the magnetic field increase.
机译:该稿件在瞬态模式下,提出了一种用于在P-N结多晶太阳能电池的基础区域内过多的少数载波的寿命测量方法。这项工作是实验瞬态3维度研究。磁场B的大小从0 mt变化至0.045 mt。实际上,太阳能电池由具有空气质量1.5的频闪闪光灯和瞬态状态下的磁场照射。在图中假设实验细节。该过程由开路电压衰减分析概述。通过拟合瞬态电压衰减曲线的线性区域来计算有效的少数载波寿命,因为线性衰减是理想的衰减。 kaleidagraph软件允许访问与寿命成反比的曲线的斜率。然后呈现并分析对少数竞争因素的有效寿命的外部磁效应。分析表明,电荷载体的有效寿命随着磁场的增加而降低。

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