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Current matching and efficiency optimization in a two-junction nanowire-on-silicon solar cell

机译:两结硅纳米线太阳能电池的电流匹配和效率优化

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Numerical simulation of the photocurrent density is performed for a two-junction nanowire (NW)-on-silicon solar cell under AM1.5G illumination. The photocurrent density is determined for NW diameters from 100-250 nm, period (spacing) from 250-1000 nm, and length of 5 μm. The dependence of photocurrent density on NW bandgap is also determined. For each NW bandgap, the optimum diameter and period are determined to obtain current matching between the top NW cell and the bottom Si cell.
机译:在AM1.5G照明下,对硅上的两结纳米线(NW)太阳能电池进行了光电流密度的数值模拟。对于从100-250 nm的NW直径,从250-1000 nm的周期(间隔)和5μm的长度确定光电流密度。还确定了光电流密度对NW带隙的依赖性。对于每个NW带隙,确定最佳直径和周期以获得顶部NW单元和底部Si单元之间的电流匹配。

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