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A Simulation-Based Method for the Comprehensive Analysis of Effective Lifetime from Photoconductance

机译:基于模拟的光电导有效寿命综合分析方法

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This paper presents a method for estimating recombination parameters in the volume and surface of solar cell precursors throughout the manufacturing process, taking into account several effects that are generally neglected. The technique is based on the comprehensive reconstruction of the effective lifetime assuming a set of fundamental parameters and its comparison to the experimental data obtained from the photoconductance measured under uniform generation in quasi-steady state conditions. The analysis starts from the semianalytical solution of the minority carrier profiles in the structures under test. This analysis overcomes the usual flat profile approximation and presents important advantages. It allows the asymmetry presented by the solar cell precursors to be taken into account and deals with a wide range of surface conditions: emitters, bare silicon or dielectric passivations. The model also accounts for the effect of the electric field in the volume, and implements several phenomena that are sometimes neglected but are relevant when measuring industrial solar cells precursors: the injection dependence of mobilities and recombination lifetimes, the presence of non-recombinant traps and the Depletion Region Modulation effect. The estimation technique requires uniform generation, which greatly facilitates the calculation of the carrier profiles and allows for a simple method for the auto calibration of the light absorption.
机译:本文提出了一种在整个制造过程中估算太阳能电池前体的体积和表面中的重组参数的方法,同时考虑了通常被忽略的几种影响。该技术基于假设一组基本参数的有效寿命的全面重建,并将其与在准稳态条件下均匀产生时测得的光导实验数据进行比较。分析从被测结构中少数载流子分布的半解析解开始。该分析克服了通常的平面轮廓近似并具有重要的优势。它可以考虑太阳能电池前体的不对称性,并处理各种表面条件:发射极,裸硅或电介质钝化。该模型还考虑了电场对体积的影响,并实现了有时被忽略但在测量工业太阳能电池前体时相关的几种现象:迁移率和重组寿命的注入依赖性,非重组阱的存在以及耗尽区调制效果。估算技术需要均匀的生成,这大大简化了载流子分布的计算,并为自动校准光吸收提供了一种简单的方法。

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