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首页> 外文期刊>Journal of Material Sciences & Engineering >Wavelength and Constant Magnetic field Dependence of the Steady-state Photoconductivity of a Bifacial Silicon Solar Cell
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Wavelength and Constant Magnetic field Dependence of the Steady-state Photoconductivity of a Bifacial Silicon Solar Cell

机译:双面硅太阳能电池稳态光电导的波长和恒定磁场依赖性

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In this work, a theoretical study on the photoconductivity of a bifacial silicon solar cell under monochromatic illumination and constant magnetic field is presented. Analytical expression of the photoconductivity is established according to base depth, illumination wavelength, junction recombination velocity and magnetic field value. The photoconductivity profile versus wavelength shows two energy absorption peaks corresponding to specific wavelengths. Based on a linear model of the photoconductivity versus junction recombination velocity, in a given interval, we determine an equivalent capacitance which depends on both wavelength and magnetic field.
机译:在这项工作中,提出了在单色照明和恒定磁场下双面硅太阳能电池的光电导性的理论研究。根据基极深度,照射波长,结复合速度和磁场值建立光电导率的解析表达式。光电导曲线与波长的关系显示出两个与特定波长相对应的能量吸收峰。根据光电导率与结复合速度的线性模型,在给定的时间间隔内,我们确定等效电容,该等效电容取决于波长和磁场。

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