首页> 外文会议>Advanced workshop on silicon recombination lifetime characterization methods >SPATIAL NONUNIFORMITIES IN THE MINORITY-CARRIER DIFFUSION LENGTH/LIFETIME: MEASUREMENT AND IMPLICATIONS ON A LARGE-AREA DEVICE PERFORMANCE
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SPATIAL NONUNIFORMITIES IN THE MINORITY-CARRIER DIFFUSION LENGTH/LIFETIME: MEASUREMENT AND IMPLICATIONS ON A LARGE-AREA DEVICE PERFORMANCE

机译:少数载波扩散长度/寿命中的空间不均匀性:对大面积设备性能的测量和影响

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Measurement of the minority-carrier diffusion length (L) or lifetime (τ) in a nonuniform material, such as a photovoltaic (PV) silicon substrate, can pose major challenges. In general, a measured value is meaningful only if the size of the probe beam >> L, and the material is uniform in and around the region of measurement. When the measurement conditions differ from these, there is a net flow of generated earriers from the illuminated region into the unilluminated region, and/or an exchange of carriers within the neighboring regions. In these cases, the error can arise from two mechanisms: (ⅰ) recombination at the surface, and (ⅱ) exchange of carriers within regions of different diffusion lengths. These errors can be minimized by the proper selection of the carrier generation conditions and sample preparation. By combining the experimental results with less rigorous theoretical analyses, the conditions for the measurement of local values of L (or τ) in a PV substrate can be determined. A network model can be used to integrate the influence of spatial distribution of L-values on a nonuniform substrate and predict the electrical characteristics of the large-area device fabricated on it.
机译:在非均匀材料中测量少数载体扩散长度(L)或寿命(τ),例如光伏(PV)硅衬底,可以构成主要的挑战。通常,仅当探针光束 L的尺寸“和材料在测量区域内和周围均匀时,测量值才有意义。当测量条件与这些不同时,从照明区域的产生的耳机的净流动进入未启发性区域,和/或邻近区域内的载流子交换。在这些情况下,误差可能来自两种机制:(Ⅰ)表面重组,(Ⅱ)在不同扩散长度的区域内交换载体。通过正确选择载体生成条件和样品制备,可以最小化这些误差。通过将实验结果与较小的理论分析相结合,可以确定PV衬底中L(或τ)的局部值的条件。网络模型可用于整合L值对非均匀基材上L值的影响,并预测其上制造的大面积器件的电特性。

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