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Demonstration and Analysis of the Photocurrent by absorption of two sub-bandgap photons in a quantum dot intermediate band solar cell

机译:量子点中带太阳能电池中两个亚带隙光子的吸收对光电流的演示和分析

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摘要

In order to surpass the efficiency limit of single gap solar cells, intermediate band solar cells (IBSC) have to fulfill two requirements: the production of extra photocurrent by absorption of sub-bandgap photons in electronic transitions involving the intermediate band (IB) and the preservation of a high output voltage, not limited by the existence of this band. This work presents experimental evidence of the production of electron-hole pairs by absorption of two sub-bandgap photons in IBSC prototypes fabricated with InAs/GaAs QD material. The experiments were carried out at low temperatures using a specifically designed modulated photocurrent measurement set-up with two light beams. The results are analysed with the help of a simple equivalent circuit model. This analysis is also used to highlight the relevance of the two-photon mechanism demonstrated in the experiment. It is discussed that, although the absorption of sub-bandgap photons in one of the IB transitions and subsequent thermal escape of carriers is a sufficient mechanism to obtain a photocurrent enhancement, the absorption of sub-bandgap photons in both transitions involving the IB is a requisite for the voltage preservation in IBSCs.
机译:为了超越单间隙太阳能电池的效率极限,中间带太阳能电池(IBSC)必须满足两个要求:通过吸收涉及中间带(IB)的电子跃迁中的子带隙光子产生额外的光电流。保持高输出电压,不受该频带的存在的限制。这项工作提供了通过吸收由InAs / GaAs QD材料制成的IBSC原型中两个亚带隙光子而产生电子-空穴对的实验证据。实验是在低温下使用专门设计的带有两个光束的调制光电流测量装置进行的。在简单的等效电路模型的帮助下分析结果。该分析还用于强调实验中证明的双光子机理的相关性。讨论的是,尽管在一个IB跃迁中吸收子带隙光子以及随后载流子的热逸散是获得光电流增强的充分机制,但是在涉及IB的两个跃迁中,子带隙光子的吸收是一个IBSC中保持电压的必要条件。

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