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Anisotropic emission and photon-recycling in strain-balanced quantum well solar cells

机译:应变平衡量子阱太阳能电池中的各向异性发射和光子循环

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摘要

Strain-balanced quantum well solar cells (SB-QWSCs) extend the photon absorption edge beyond that of bulk GaAs by incorporation of quantum wells in the i-region of a p-i-n device. Anisotropy arises from a splitting of the valence band due to compressive strain in the quantum wells, suppressing a transition which contributes to emission from the edge of the quantum wells. We have studied both the emission light polarized in the plane perpendicular (TM) to the quantum well which couples exclusively to the light hole transition and the emission polarized in the plane of the quantum wells (TE) which couples mainly to the heavy hole transition. It was found that the spontaneous emission rates TM and TE increase when the quantum wells are deeper. The addition of a distributed Bragg reflector can substantially increase the photocurrent while decreasing the radiative recombination current. We have examined the impact of the photon recycling effect on SB-QWSC performance. We have optimized SB-QWSC design to achieve single junction efficiencies above 30%.
机译:应变平衡量子阱太阳能电池(SB-QWSC)通过在p-i-n器件的i-区域中引入量子阱,将光子吸收边缘扩展到了块状GaAs之外。各向异性是由于量子阱中的压缩应变引起的价带分裂而产生的,从而抑制了有助于从量子阱边缘发射的跃迁。我们已经研究了在垂直于(TM)平面的偏振态与垂直耦合到光空穴跃迁的量子阱中偏振的发射光以及在主要与重空穴的转换耦合的量子阱(TE)平面中偏振化的辐射。发现当量子阱更深时,自发发射率TM和TE增大。分布式布拉格反射器的添加可以显着增加光电流,同时降低辐射复合电流。我们已经研究了光子回收效应对SB-QWSC性能的影响。我们优化了SB-QWSC设计,以实现30%以上的单结效率。

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  • 来源
    《Journal of Applied Physics》 |2014年第16期|164502.1-164502.7|共7页
  • 作者单位

    Academic Unit of Physics, Autonomous University of Zacatecas, Czda. Solidaridad y Paseo La Bufa SIN, 98060 Zacatecas, Zac, Mexico;

    Solar Cell Laboratory, Institute of Materials Science and Technology (IMRE), University of Havana, Zapata y G, 10400 La Habana, Cuba;

    Faculty of Physics, University of Havana, Colina Universitaria. 10400 La Habana, Cuba;

    Nanophotonics Technology Center, Universidad Politecnica de Valencia, 46022 Valencia, Spain;

    Academic Unit of Physics, Autonomous University of Zacatecas, Czda. Solidaridad y Paseo La Bufa SIN, 98060 Zacatecas, Zac, Mexico;

    Academic Unit of Physics, Autonomous University of Zacatecas, Czda. Solidaridad y Paseo La Bufa SIN, 98060 Zacatecas, Zac, Mexico;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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