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Lamella Silicon Solar Cell under Both Temperature and Magnetic Field: Width Optimum Determination

机译:薄片在温度和磁场下的薄片硅太阳能电池:宽度最佳测定

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This work deals with determining the optimum thickness of the lamella wafer of silicon solar cell. The (p) base region makes up the bulk of the thickness of the wafer. This thickness has always been a factor limiting the performance of the solar cell, as it produces the maximum amount of electrical charges, contributing to the photocurrent. Determining the thickness of the wafer cannot be only mechanical. It takes into account the internal physical mechanisms of generation-diffusion-recombination of excess minority carriers. They are also influenced by external factors such as temperature and magnetic field. Under these conditions, magneto transport equation is required to be applied on excess minority carrier in lamella base silicon solar cell. It yields maximum diffusion coefficient which result on Lorentz law and Umklapp process. Then from photocurrent, back surface recombination velocity expressions are derived, both maximum diffusion coefficient and thickness dependent. The plot of the back surface recombination calibration curves as function of lamella width, leads to its maximum values, trough intercept points. Lamella optimum width is then obtained, both temperature and magnetic field dependent and expressed in relationships to show the required base thickness in the elaboration process.
机译:该工作涉及确定硅太阳能电池薄片晶片的最佳厚度。 (P)基区域构成晶片的厚度的大部分。这种厚度始终是限制太阳能电池的性能的因素,因为它产生了有助于光电流的最大电荷量。确定晶片的厚度不能仅是机械的。考虑到过量的少数载体的发电 - 扩散重组的内部物理机制。它们也受到温度和磁场等外部因素的影响。在这些条件下,需要磁传输方程需要在薄片基硅太阳能电池中施加在过量的少数载体上。它产生了导致洛伦兹法和UMKLAPP过程的最大扩散系数。然后从光电流中,导出后表面重组速度表达式,既有最大扩散系数和厚度都取决于。背面复合校准曲线的曲线图作为薄片宽度的功能,导致其最大值,低谷截距点。然后获得薄片最佳宽度,温度和磁场依赖于关系,以在纺织过程中显示所需的基础厚度。

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