van der Geest Maarten L S, de Boer Jeroen J, Murzyn Kevin, Jürgens Peter, Ehrler Bruno, Kraus Peter M
Advanced Research Center for Nanolithography (ARCNL), Science Park 106, 1098 XG Amsterdam, The Netherlands.
Center for Nanophotonics, AMOLF, Science Park 102, 1098 XG Amsterdam, The Netherlands.
J Phys Chem Lett. 2023 Dec 7;14(48):10810-10818. doi: 10.1021/acs.jpclett.3c02588. Epub 2023 Nov 28.
High-harmonic generation is the frequency upconversion of an intense femtosecond infrared laser in a material. In condensed-phase high-harmonic generation, laser-driven currents of coherently excited charge carriers map the electronic structure onto the emitted light. This promises a thus far scarcely explored potential of condensed-phase time-resolved high-harmonic spectroscopy for probing carrier dynamics. Here, we realize this potential and use time-resolved solid-state high-harmonic spectroscopy from a laser-excited methylammonium lead bromide (MAPbBr) thin film, a key material in perovskite solar cells, for measuring carrier cooling and relaxation on femto- and picosecond time scales. Through comparison with transient absorption, we show the links between carrier dynamics and experimental observables of generated harmonics. By highlighting and understanding the interplay of these dynamics, we demonstrate transient optical control over the emission of solid-state high-harmonic generation in MAPbBr.
高次谐波产生是指强飞秒红外激光在材料中的频率上转换。在凝聚相高次谐波产生过程中,激光驱动的相干激发电荷载流子电流将电子结构映射到发射光上。这为凝聚相时间分辨高次谐波光谱学探测载流子动力学提供了一个迄今为止几乎未被探索的潜力。在此,我们实现了这一潜力,并利用来自激光激发的甲基溴化铅(MAPbBr)薄膜(一种钙钛矿太阳能电池中的关键材料)的时间分辨固态高次谐波光谱学,来测量飞秒和皮秒时间尺度上的载流子冷却和弛豫。通过与瞬态吸收进行比较,我们展示了载流子动力学与所产生谐波的实验可观测量之间的联系。通过突出并理解这些动力学的相互作用,我们展示了对MAPbBr中固态高次谐波产生发射的瞬态光学控制。