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Ultrafast extreme-ultraviolet ARPES studies of electronic dynamics in two-dimensional materials

机译:二维材料中电子动力学的超快极紫外ARPES研究

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The intriguing electronic properties of two-dimensional materials motivates experiments to resolve their rapid, microscopic interactions and dynamics across momentum space. Essential insight into the electronic momentum-space dynamics can be obtained directly via time- and angle-resolved photoemission spectroscopy (trARPES). We discuss the development of a high-repetition rate trARPES setup that employs a bright source of narrowband, extreme-UV harmonics around 22.3 eV, and its application to sensitive studies of materials dynamics. In the bulk transition-metal dichalcogenide MoSe_2 momentum-space quasiparticle scattering is observed after resonant excitation at the Appoint exciton line, resulting in the time-delayed buildup of electrons at the ∑-point conduction band minimum. We will discuss this and other aspects of the non-equilibrium electronic response accessible with the extreme-UV trARPES probe.
机译:二维材料的迷人电子特性激发了实验来解决它们在动量空间中的快速,微观的相互作用和动力学。可以通过时间和角度分辨光发射光谱法(trARPES)直接获得对电子动量-空间动力学的基本了解。我们讨论了高重复频率trARPES装置的开发,该装置采用了22.3 eV附近的窄带,极端UV谐波的亮光源,并将其应用于对材料动力学的敏感研究。在体过渡金属二卤化二硫化钼MoSe_2动量空间准粒子的散射是在Appoint激子线处共振激发后观察到的,从而导致电子在Σ点导带最小处的时间延迟累积。我们将讨论可通过极紫外trARPES探针访问的非平衡电子响应的此方面和其他方面。

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