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Optical absorption in co-deposited mixed-phase hydrogenated amorphous/nanocrystalline silicon thin films

机译:共沉积混合相氢化非晶/纳米晶硅薄膜的光学吸收

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The conductivity of amorphous/nanocrystalline hydrogenated silicon thin films (a/nc-Si:H) deposited in a dual chamber co-deposition system exhibits a non-monotonic dependence on the nanocrystal concentration. Optical absorption measurements derived from the constant photocurrent method (CPM) for similarly prepared materials are reported. The optical absorption spectra, in particular the subgap absorption, are found to be independent of nanocrystalline density for relatively small crystal fractions (< 4%). For films with a higher crystalline content, the absorption spectra indicate broader Urbach slopes and higher midgap absorption. These data are interpreted in terms of a model involving electron donation from the nanocrystals into the amorphous material.
机译:在双室共沉积系统中沉积的无定形/纳米晶氢化硅薄膜(A / NC-Si:H)的导电性表现出对纳米晶体浓度的非单调依赖性。报道了衍生自用于类似制备的材料的恒定光电流方法(CPM)的光学吸收测量。发现光学吸收光谱,特别是副盖吸收,与相对小的晶体级分(<4%)的纳米晶体密度无关。对于具有较高结晶含量的薄膜,吸收光谱表明更广泛的URBACH斜率和更高的中间涂层吸收。这些数据在涉及从纳米晶体中的电子捐赠到非晶材料的模型方面解释。

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