Diffusion length of non-equilibrium current carriers in nanowire radial p-n junctions: Effect of the curvature

V. Borblik
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Abstract

In core-shell nanowire radial p-n junction, spatial (along the radius) distribution of the injected carriers is determined not only by recombination falling of the non-equilibrium carrier concentration but also by specific falling due to cylindrical symmetry of the structure. This forces us to consider an effective diffusion length of non-equilibrium carriers in nanoscale radial structures. This effective diffusion length proves to be larger (up to 25%) than the diffusion length in usual planar p-n junction (made of the same material) under injection from the shell to the core and smaller than it (up to 60%) under injection from the core to the shell.
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非平衡载流子在纳米线径向pn结中的扩散长度:曲率的影响
在核-壳纳米线径向p-n结中,注入载流子的空间(沿半径)分布不仅取决于非平衡载流子浓度的复合下降,还取决于结构的圆柱对称性所导致的特定下降。这迫使我们考虑非平衡载流子在纳米尺度径向结构中的有效扩散长度。这种有效扩散长度比通常的平面pn结(由相同材料制成)在壳到芯注入下的扩散长度大(高达25%),比从芯到壳注入下的扩散长度小(高达60%)。
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