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首页> 外文期刊>Review of Scientific Instruments >High resolution laser beam induced current images under trichromatic laser radiation: Approximation to the solar irradiation
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High resolution laser beam induced current images under trichromatic laser radiation: Approximation to the solar irradiation

机译:三色激光辐射下的高分辨率激光束感应电流图像:与太阳辐射近似

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A laser beam induced current (LBIC) map of a photoactive surface is a very useful tool when it is necessary to study the spatial variability of properties such as photoconverter efficiency or factors connected with the recombination of carriers. Obtaining high spatial resolution LBIC maps involves irradiating the photoactive surface with a photonic beam with Gaussian power distribution and with a low dispersion coefficient. Laser emission fulfils these characteristics, but against it is the fact that it is highly monochromatic and therefore has a spectral distribution different to solar emissions. This work presents an instrumental system and procedure to obtain high spatial resolution LBIC maps in conditions approximating solar irradiation. The methodology developed consists of a trichromatic irradiation system based on three sources of laser excitation with emission in the red, green, and blue zones of the electromagnetic spectrum. The relative irradiation powers are determined by either solar spectrum distribution or Planck’s emission formula which provides information approximate to the behavior of the system if it were under solar irradiation. In turn, an algorithm and a procedure have been developed to be able to form images based on the scans performed by the three lasers, providing information about the photoconverter efficiency of photovoltaic devices under the irradiation conditions used. This system has been checked with three photosensitive devices based on three different technologies: a commercial silicon photodiode, a commercial photoresistor, and a dye-sensitized solar cell. These devices make it possible to check how the superficial quantum efficiency has areas dependent upon the excitation wavelength while it has been possible to measure global incident photon-to-current efficiency values approximating those that would be obtained under irradiation conditions with sunlight. © 2010 American Institute of Physics Article Outline INTRODUCTION RELATION TO PREVIOUS WORK EXPERIMENTAL LBIC system Working procedure Samples RESULTS Commercial photodiode Commercial photoresistor Dye-sensitized solar cell CONCLUSIONS
机译:当有必要研究诸如光转换效率或与载流子重组相关的因素之类的空间变异性时,光敏表面的激光束感应电流(LBIC)图是非常有用的工具。获得高空间分辨率的LBIC图涉及用具有高斯功率分布且色散系数低的光子束照射光敏表面。激光发射具有这些特征,但与此相反的是,它是高度单色的,因此具有与太阳辐射不同的光谱分布。这项工作提出了一种在接近太阳辐射的条件下获得高空间分辨率LBIC图的仪器系统和程序。所开发的方法包括一个三色辐射系统,该系统基于三种激光激发源,并在电磁光谱的红色,绿色和蓝色区域中进行发射。相对辐射功率由太阳光谱分布或普朗克的发射公式确定,该公式可提供近似于系统在太阳辐射下的行为的信息。继而,已经开发了一种算法和过程以能够基于由三个激光器执行的扫描来形成图像,从而提供关于在所使用的照射条件下光伏器件的光转换效率的信息。该系统已通过基于三种不同技术的三种光敏设备进行了检查:商用硅光电二极管,商用光敏电阻和染料敏化太阳能电池。这些设备可以检查表面量子效率如何具有取决于激发波长的面积,同时可以测量近似于在阳光照射条件下获得的整体入射光子-电流效率值。 ©2010美国物理研究所文章大纲与上一工作实验LBIC系统相关的介绍工作程序样品结果商业光电二极管商业光敏电阻染料敏化太阳能电池结论

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