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Investigating minority-carrier lifetime in small spherical Si using microwave photoconductance decay

机译:利用微波光导衰减研究球形硅中的少数载流子寿命

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We have studied minority-carrier recombination lifetime in small spherical Si (< 1 mm in diameter) using microwave photoconductance decay (μPCD). It was tested that 0.01 molar quinhydrone in methanol solution has the best passivation effect, which results in perfect exponential photoconductance decay curve and the highest average lifetime. However, the average lifetime of single crystalline spheres that were formed by polishing single crystalline Czochralski bulks was only 4.8 μs, and that of tear-drop-like spheres that were formed by a dropping method was 2.6 μs. These values are significantly lower compared with crystalline Si wafers. It has been found that the low lifetime is induced by the small size, and the spherical geometry does not have influence on the lifetime value. The surface recombination velocity becomes more dominant compared to bulk recombination as the size of sphere becomes smaller. Therefore, the principal of surface equivalent lifetime in the sphere is essentially different from the case of the planar wafer.
机译:我们已经使用微波光电导衰减(μPCD)研究了小球形Si(直径<1 mm)中的少数载流子复合寿命。测试表明,在甲醇溶液中0.01摩尔的对苯二酚具有最佳的钝化效果,从而产生了理想的指数光电导衰减曲线和最长的平均寿命。然而,通过抛光单晶切克劳斯基块状物形成的单晶球的平均寿命仅为4.8μs,而通过滴落法形成的泪滴状球的平均寿命为2.6μs。与结晶硅晶片相比,这些值明显更低。已经发现,低寿命是由小尺寸引起的,并且球形几何形状对寿命值没有影响。随着球体尺寸的变小,与本体重组相比,表面重组速度变得更加占优势。因此,球体中的表面等效寿命的原理与平面晶片的情况基本不同。

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