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Saturable Two-Step Photocurrent Generation in Intermediate-Band Solar Cells Including InAs Quantum Dots Embedded in AlGaAs/GaAs Quantum Wells

机译:包括嵌入AlGaAs / GaAs量子阱中的InAs量子点在内的中带太阳能电池中的饱和两步光电流产生

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We studied in detail the photocurrent generation process in two-step photon absorption in intermediate-band solar cells, including InAs quantum dots embedded in AlGa As/GaAs quantum wells at room temperature. The photocurrent generated by the two-step photon absorption exhibited saturation as the interband excitation intensity increased in strength. On the other hand, as the intersubband excitation intensity increased, the two-step photoexcitation current deviated from a power law. Furthermore, the two-step photoexcitation current exhibiting saturation and deviation strongly depended on both the interband and intersubband excitation intensities. To interpret these phenomena, we performed a theoretical simulation of the two-step photoexcitation current. The results suggest that the photocurrent saturation and deviation were caused by filling of the intermediate states with electrons. Furthermore, our calculated results indicate that the electron-recombination lifetime in the intermediate states is extremely long. The results of the temperature dependence of the two-step photoexcitation current and the excitation intensity dependence of photoluminescence suggest that efficient electron–hole separation extends electron lifetime.
机译:我们详细研究了中频太阳能电池中两步光子吸收过程中的光电流产生过程,包括在室温下嵌入AlGa As / GaAs量子阱中的InAs量子点。随着带间激发强度的增加,由两步光子吸收产生的光电流表现出饱和。另一方面,随着子带间激发强度的增加,两步光激发电流偏离幂定律。此外,呈现饱和和偏差的两步光激发电流强烈地取决于带间和子带间激发强度。为了解释这些现象,我们对两步光激发电流进行了理论模拟。结果表明,光电流饱和和偏差是由电子填充中间态引起的。此外,我们的计算结果表明,在中间态下的电子复合寿命非常长。两步光激发电流的温度依赖性和光致发光的激发强度依赖性的结果表明,有效的电子-空穴分离可延长电子寿命。

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