论文标题

inas-alassb核心壳纳米线中的热载体动力学

Hot Carrier Dynamics in InAs-AlAsSb Core-Shell Nanowires

论文作者

Sandner, Daniel, Esmaielpour, Hamidreza, del Giudice, Fabio, Nuber, Matthias, Kienberger, Reinhard, Koblmüller, Gregor, Iglev, Hristo

论文摘要

半导体纳米线(NWS)显示出由于其小尺寸而显示出可靠的热载体效应的证据。通过照片吸收产生的这些纳米结构中热载体的松弛动力学在光电设备和高效率太阳能电池(例如热载体太阳能电池)中非常重要。在各种III-V半导体中,由于其高光吸收性和较高的迁移率,砷化胺(INAS)NWS NWS在高级光收集设备中的应用是有前途的候选者。在这里,我们使用具有广泛调谐的泵和探针能量的超快泵送光谱法调查了INAS-Alassb核心壳NWS中的热载体动力学以及裸核INAS NWS。我们发现纵向光(LO)声子和热电子寿命约为3 ps和30 ps的寿命分别为2.3 ps,载流子 - 载体相互作用和电子 - 音波相互作用分别为30 ps。此外,我们已经调查了碱壳中的电子状态,发现尽管传导带中核心壳设计的较大频带偏移,但激发载体仍保留在壳中超过100 ps。我们的结果表明,等离子量的核心壳NWS有效地收获了光收集设备,这可以打开潜在的途径,以提高光伏太阳能电池的效率。

Semiconductor nanowires (NWs) have shown evidence of robust hot carrier effects due to their small dimensions. The relaxation dynamics of hot carriers in these nanostructures, generated by photo-absorption, are of great importance in optoelectronic devices and high efficiency solar cells, such as hot carrier solar cells. Among various III-V semiconductors, indium arsenide (InAs) NWs are promising candidates for their applications in advanced light harvesting devices due to their high photo-absorptivity and high mobility. Here, we investigate the hot carrier dynamics in InAs-AlAsSb core-shell NWs, as well as bare-core InAs NWs, using ultrafast pump-probe spectroscopy with widely tuned pump and probe energies. We have found a lifetime of 2.3 ps for longitudinal optical (LO) phonons and hot electron lifetimes of about 3 ps and 30 ps for carrier-carrier interactions and electron-phonon interactions, respectively. In addition, we have investigated the electronic states in the AlAsSb-shell and found that, despite the large band offset of the core-shell design in the conduction band, excited carriers remain in the shell longer than 100 ps. Our results indicate evidence of plasmon-tailored core-shell NWs for efficient light harvesting devices, which could open potential avenues for improving the efficiency of photovoltaic solar cells.

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