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Enhanced absorption of thin-film photovoltaic cells using an optical cavity

机译:使用光学腔增强薄膜光伏电池的吸收

摘要

We show via numerical simulations that the absorption and solar energy conversion efficiency of a thin-film photovoltaic (PV) cell can be significantly enhanced by embedding it into an optical cavity. A reflective hemi-ellipsoid with an aperture for sunlight placed over a tilted PV cell reflects unabsorbed photons back to the cell, allowing for multiple opportunities for absorption. Ray tracing simulations predict that with the proposed cavity a textured thin-film silicon cell can exceed the Yablonovitch (Lambertian) limit for absorption across a broad wavelength range, while the performance of the cavity-embedded planar PV cell approaches that of the cell with the surface texturing.
机译:我们通过数值模拟表明,将薄膜光伏(PV)电池嵌入光腔可以大大提高其吸收和太阳能转换效率。带有反射孔的半椭圆形反射光放置在倾斜的PV电池上,可将未吸收的光子反射回该电池,从而为吸收提供了多种机会。光线追踪模拟预测,使用拟议的腔体,结构化的薄膜硅电池在宽波长范围内的吸收率可以超过Yablonovitch(Lambertian)极限,而腔体嵌入的平面PV电池的性能接近采用该腔体的电池表面纹理化。

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