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The collection probability and spectral response in isotype heterolayers of tandem solar cells

机译:串联太阳能电池同型异质层的收集概率和光谱响应

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An analytical model for the position-dependent collection probability in uniformly doped one-dimensional layers with abrupt compositional and bandgap changes is presented. The collection probability is derived from coupled system of diffusion equations for low-level injection of photo-generated minority carriers in a stack of isotype heterolayers. Collection probability maintained continuity across isotype heterojunctions despite discontinuities of excess minority carrier concentration. An estimate for window and BSF passivation showed that the effective surface recombination velocity exponentially depended on the energygap difference, and linearly depended on increased doping, reduced mobility and increased thickness of sub-diffusion length passivation layers. Analytical expressions for the photo-generated current, and the internal quantum efficiency from each heterolayer were developed, and applied to the analysis of reported spectral response of a dual junction GalnP/GaAs tandem solar cell. Calculated internal quantum efficiencies closely matched reported experimental results, with the exception of sub-band absorption due to sub-bandgap deficiencies in the optical models and photon recycling. Calculated spectral response showed that upper AlInP_2 window, quasi-neutral emitter, and SCR layers dominated collection of photo-generated carriers in the top GaInP_2 cell, whereas, the base dominated collection of photo-generated carriers in the bottom GaAs cell. Results show that augmenting Hovel's three layers (emitter, SCR, and base) analysis with the response from the top window layer should be sufficient to capture the spectral response of solar cells with thin passivation layers.
机译:建立了均匀掺杂一维层中组分和能隙突然变化的位置依赖收集概率的解析模型。收集概率是从扩散方程的耦合系统中得出的,该扩散方程用于在同型异质层堆叠中低水平注入光生少数载流子。尽管少数载流子浓度过高,收集概率仍保持跨同型异质结的连续性。对窗口和BSF钝化的估计表明,有效的表面复合速度指数取决于能隙差,而线性取决于增加的掺杂,减小的迁移率和增加的子扩散长度钝化层的厚度。开发了光生电流的解析表达式以及每个异质层的内部量子效率,并将其用于双结GalnP / GaAs串联太阳能电池的光谱响应报告分析。计算出的内部量子效率与报道的实验结果非常吻合,但由于光学模型和光子回收中的亚带隙缺陷而导致的亚带吸收除外。计算得出的光谱响应表明,顶部的GaInP_2单元中上部的AlInP_2窗口,准中性发射极和SCR层主导着光生载流子的集合,而底部的GaAs单元中的基础主导了光生载子的集合。结果表明,利用顶部窗口层的响应来增强Hovel的三层分析(发射极,SCR和基极)应足以捕获具有薄钝化层的太阳能电池的光谱响应。

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