材料科学
吸收率
非晶硅
光学
薄膜
光散射
散射
硅
光电流
衰减系数
光电子学
吸收(声学)
等离子太阳电池
透射率
晶体硅
单晶硅
纳米技术
物理
复合材料
反射率
作者
A. Poruba,A. Fejfar,Z. Remeš,J. Špringer,M. Vaněček,J. Kočka,J. Meier,P. Torres,A. Shah
摘要
Optical characterization methods were applied to a series of microcrystalline silicon thin films and solar cells deposited by the very high frequency glow discharge technique. Bulk and surface light scattering effects were analyzed. A detailed theory for evaluation of the optical absorption coefficient α from transmittance, reflectance and absorptance (with the help of constant photocurrent method) measurements in a broad spectral region is presented for the case of surface and bulk light scattering. The spectral dependence of α is interpreted in terms of defect density, disorder, crystalline/amorphous fraction and material morphology. The enhanced light absorption in microcrystalline silicon films and solar cells is mainly due to a longer optical path as the result of an efficient diffuse light scattering at the textured film surface. This light scattering effect is a key characteristic of efficient thin-film-silicon solar cells.
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