Physics of silicon solar cells

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École Polytechnique

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The first MOOC “Photovoltaic solar energy” is a general presentation of the solar photovoltaics technologies in the global energetic context, without extensive details. In particular the description of the solar cell operation is restricted to the ideal case In contrast this second MOOC allows a deep understanding of the properties of solar cells based on crystalline semiconductors. It consists in a general presentation of the physics of the photovoltaics devices with a particular emphasize on the silicon technology that currently represents more than 90% share of the market. Photovoltaic applications of III-V semiconductors are also mentioned. Indeed from a fundamental point of view, a solar cell can be considered as a semiconductor device (a diode) exposed to the sunlight. An introduction to the semiconductor physics is given, followed by the electron transport phenomena in a diode device. A detailed description of the solar cell operation is then provided, including the conversion efficiency limitations. A description of the solar spectrum and the optical properties of the cells are also presented. Finally the crystalline silicon technology is described from the bulk crystalline growth up to the preparation of heterojunctions combining crystalline and amorphous materials.

硅太阳能电池的物理原理:第一个MOOC“光伏太阳能”是在全球充满活力的背景下对太阳能光伏技术的一般介绍,没有详尽的细节。特别是对太阳能电池运行的描述仅限于理想情况 相反,第二种MOOC可以深入了解基于晶体半导体的太阳能电池的性能。它主要介绍了光伏设备的物理原理,特别强调了硅技术,该技术目前占市场的90%以上。还提到了III-V半导体的光伏应用。 实际上,从基本的观点来看,太阳能电池可以被认为是暴露在阳光下的半导体器件(二极管)。首先介绍了半导体物理学,然后介绍了二极管器件中的电子传输现象。然后提供了太阳能电池操作的详细描述,包括转换效率限制。还介绍了太阳光谱和电池的光学特性。最后,从整体晶体生长到结合晶体和非晶材料的异质结的制备,描述了晶体硅技术。

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