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Towards numerical simulation of nonhomogeneous thin-film silicon solar cells

机译:走向非均质薄膜硅太阳能电池的数值模拟

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We have developed an algorithm for the numerical simulation of the electrical and optical properties of a thin-film silicon solar cell. The intrinsic layer in the p-i-n solar cell is nonhomogeneous in the thickness direction. This nonhomogeneity is to be engineered via variations in the composition of the amorphous silicon. A layer of a transparent conducting oxide is welded to the p layer and the n layer is backed by a periodically corrugated metallic back reflector. The nonhomogeneous intrinsic layer may trap the incident light better than a homogeneous layer and increase the generation rate of electron-hole pairs. The periodically corrugated metallic back reflector can excite surface plasmon-polariton waves as well as waveguide modes. The generation rate of electron-hole pairs is computed using the rigorous coupled-wave approach and the drift-diffusion model is used for the computation of the current density-voltage characteristics of the solar cell.
机译:我们已经开发了一种用于薄膜硅太阳能电池电和光学特性数值模拟的算法。 p-i-n太阳能电池中的本征层在厚度方向上是不均匀的。这种不均匀性将通过非晶硅的组成变化来设计。一层透明的导电氧化物被焊接到p层,而n层则由周期性波纹金属背反射器支撑。非均质本征层可以比均质层更好地捕获入射光,并增加电子-空穴对的产生率。周期性波纹金属背反射器可以激发表面等离振子-极化波以及波导模式。使用严格的耦合波方法计算电子-空穴对的产生速率,并使用漂移-扩散模型计算太阳能电池的电流密度-电压特性。

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