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The effect of overlap between absorption coefficients on the variation of current densities in intermediate band solar cells

机译:吸收系数之间的重叠对中带太阳能电池电流密度变化的影响

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摘要

Intermediate band solar cell (IBSC) has a structure that absorbs the subbandgap photons by the help of the intermediate band (IB) located inside its base region and increases the photocurrent without decreasing the output voltage. In this study, detailed balance equations are used to investigate the current density (total, electron and hole currents) variations of IBSC with IB energy level, under nonoverlap and overlap conditions, in the cases of equal and nonequal absorption coefficients, for EG=1.95 eV. It is obtained that in both cases; the IBSC has two optimum IB levels, one below half of the band gap and the other above half of the bandgap, under nonoverlap condition. The optimum IB levels shift towards the half of the bandgap under overlap condition in the case of equal absorption coefficients. If the new optimum IB levels are used, the current contribution of IB level becomes independent of overlap. But the current resulting from the transitions between valance band to conduction band decreases sharply from 26 mA/cm2 to 8 mA/cm2.when overlap increases from 0 to 4 eV. The reduction in this current is compensated in the case of nonequal absorption coefficients.
机译:中频带太阳能电池(IBSC)具有借助于位于其基极区域内的中频带(IB)吸收亚带隙光子并在不降低输出电压的情况下增加光电流的结构。在这项研究中,详细的平衡方程用于研究在非重叠和重叠条件下,在吸收系数相等和不相等的情况下,对于E G = 1.95 eV。在两种情况下都可以得出结论:在非重叠条件下,IBSC具有两个最佳IB水平,一个低于带隙的一半,另一个高于带隙的一半。在吸收系数相等的情况下,最佳IB电平在重叠条件下向带隙的一半移动。如果使用新的最佳IB级别,则IB级别的当前贡献变得与重叠无关。但是,当价带从导带过渡到导带时,电流从26 mA / cm 2 急剧下降到8 mA / cm 2 。当重叠从0增加到4 eV时。在吸收系数不相等的情况下,可以补偿该电流的减小。

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  • 会议地点 Buraa(TR);Buraa(TR)
  • 作者

    Navruz T. S.;

  • 作者单位

    Gazi University, Faculty of Engineering and Architecture, Department of Electrical and Electronics Engineering, Maltepe, Ankara, Turkey;

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