Budai Judit, Pápa Zsuzsanna, Petrik Péter, Dombi Péter
ELI-ALPS, ELI-HU Non-Profit Ltd., Szeged, H-6728, Hungary.
Department of Optics and Quantum Electronics, University of Szeged, Szeged, H-6720, Hungary.
Nat Commun. 2022 Nov 5;13(1):6695. doi: 10.1038/s41467-022-34554-5.
Non-thermal and thermal carrier populations in plasmonic systems raised significant interest in contemporary fundamental and applied physics. Although the theoretical description predicts not only the energies but also the location of the generated carriers, the experimental justification of these theories is still lacking. Here, we demonstrate experimentally that upon the optical excitation of surface plasmon polaritons, a non-thermal electron population appears in the topmost domain of the plasmonic film directly coupled to the local fields. The applied all-optical method is based on spectroscopic ellipsometric determination of the dielectric function, allowing us to obtain in-depth information on surface plasmon induced changes of the directly related electron occupancies. The ultrahigh sensitivity of our method allows us to capture the signatures of changes induced by electron-electron scattering processes with ultrafast decay times. These experiments shed light on the build-up of plasmonic hot electron population in nanoscale media.
等离子体系统中的非热载流子和热载流子群体引起了当代基础物理学和应用物理学的极大兴趣。尽管理论描述不仅预测了所产生载流子的能量,还预测了其位置,但这些理论的实验验证仍然缺乏。在这里,我们通过实验证明,在表面等离激元极化激元的光激发下,非热电子群体出现在与局部场直接耦合的等离子体薄膜的最顶层区域。所应用的全光学方法基于介电函数的光谱椭偏测量,使我们能够获得有关表面等离激元引起的直接相关电子占据变化的深入信息。我们方法的超高灵敏度使我们能够捕捉到具有超快衰减时间的电子 - 电子散射过程引起的变化特征。这些实验揭示了纳米级介质中等离子体热电子群体的形成过程。