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Light absorption by ordered planar structure of crystalline silicon particles: Simulation as applied to enhancement of the solar cell performance

机译:通过晶体硅颗粒的有序平面结构光吸收:用于增强太阳能电池性能的模拟

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Light absorption by a single spherical crystalline silicon (c-Si) particle and by monolayers of submicron c-Si particles arranged in triangular lattice is examined within the wavelength range from 0.28 to 1.12 mu m. Data for spectral and integrated (over the terrestrial solar spectral irradiance "Global tilt" ASTM G173-03) absorption coefficients of monolayer demonstrating the possibility to enhance light absorption by a particulate active layer of crystalline silicon are presented. They are calculated in the quasicrystalline approximation of the theory of multiple scattering of waves. It is shown that in the narrow wavelength intervals (up to 10 nm) the spectral absorption coefficient of monolayer can be more than 100 times larger than the one of the plane-parallel plate of equal volume of material. Some results on the transmittance and reflectance of partially ordered monolayer are presented as well. The potentialities of light absorption enhancement in a single monolayer and three-monolayer system are considered.
机译:通过0.28至1.12μm的波长范围内检查单个球形晶体硅(C-Si)颗粒和布置在三角晶格中的亚微米C-Si颗粒的单层的光吸收。光谱和集成的数据(通过地面太阳光谱辐照度“ASTM倾斜”ASTM G173-03)透明的单层的吸收系数,证明了通过结晶硅的颗粒活性层增强光吸收的可能性。它们是在波浪多次散射理论的拟晶近似下计算的。结果表明,在窄波长间隔(最多10nm)中,单层的光谱吸收系数可以大于相等材料的平面平行板之一大的100倍。还提出了部分有序单层的透射率和反射率的一些结果。考虑了单层和三单层系统中的光吸收增强的潜力。

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