论文标题
二维材料的高谐波光谱
High-harmonic spectroscopy of two-dimensional materials
论文作者
论文摘要
在中红外和Terahertz激光脉冲的产生中的最新进展使我们能够观察到半导体,电介质和半学的强场驱动的非扰动高谐波产生(HHG)。 HHG在具有前所未有的时间分辨率的材料中为时间分辨的超快电子动力学增加了另一个维度。当前论文讨论了HHG是一种新兴的方法,用于探测二维材料中静态和动力学特性的方法。在本文中,研究了带有六边形对称性的二维材料。 我们已经证明,高谐波频谱编码了不同带之间电子带结构的指纹和频带间耦合。此外,通过分析间隙和无间隙石墨烯,我们显示了半学和半导体中的电子动力学如何不同,因为谐波频谱的依赖于驱动激光器的极化。为了探索缺陷在HHG中的作用,考虑了六角硼硼中的自旋空位缺陷。已经发现电子电子相互作用对于缺陷固体中的电子动力学至关重要。在所有情况下,我们都介绍如何从谐波谱中提取不同的晶格对称性。最后,提出了一种使用量身定制的激光脉冲观察原始石墨烯中谷地化的轻驱动方法。此外,讨论了一个配方,以编写和读取谷置选择性电子激发,该材料具有零带隙和零浆果曲率的材料。
Recent advancements in the generation of mid-infrared and terahertz laser pulses have enabled us to observe strong-field driven non-perturbative high-harmonic generation (HHG) from semiconductors, dielectrics, and semimetals. HHG has added another dimension to time-resolved ultrafast electron dynamics in materials with unprecedented temporal resolution. Present thesis discusses how HHG is an emerging method to probe static and dynamical properties in two-dimensional materials. In this thesis, two-dimensional materials with hexagonal symmetry are studied. We have demonstrated that the high-harmonic spectrum encodes the fingerprints of electronic band structure and interband coupling between different bands. Furthermore, by analysing gapped and gapless graphene, we show how electron dynamics in a semimetal and a semiconductor are different as the harmonic spectrum depends differently on the polarisation of the driving laser. To explore the role of defects in HHG, spin-polarised vacancy defects in hexagonal boron nitride are considered. It has been found that electron-electron interaction is crucial for electron dynamics in a defected solid. In all cases, we present how different symmetries of the lattice can be extracted from the harmonic spectrum. Finally, a light-driven method is proposed for observing valley-polarisation in pristine graphene, using a tailored laser pulse. Also, a recipe is discussed to write and read valley-selective electron excitations in materials with zero bandgap and zero Berry curvature.