等离子体子
散射
调制(音乐)
表面等离子共振
光电子学
谐振器
材料科学
光散射
物理
共振(粒子物理)
光学
纳米颗粒
纳米技术
原子物理学
声学
作者
Luka Zurak,Christian Wolff,Jessica Meier,René Kullock,N. Asger Mortensen,Bert Hecht,Thorsten Feichtner
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2024-09-06
卷期号:10 (36): eadn5227-eadn5227
被引量:14
标识
DOI:10.1126/sciadv.adn5227
摘要
Scattering of light by plasmonic nanoparticles is classically described using bulk material properties with infinitesimally thin boundaries. However, because of the quantum nature of electrons, real interfaces have finite thickness, leading to nonclassical surface effects that influence light scattering in small particles. Electrical gating offers a promising route to control and study these effects, as static screening charges reside at the boundary. We investigate the modulation of the surface response upon direct electrical charging of single plasmonic nanoresonators. By analyzing measured changes in light scattering within the framework of surface response functions, we find the resonance shift well accounted for by modulation of the classical in-plane surface current. Unexpectedly, we also observed a change in the resonance width, indicating reduced losses for negatively charged resonators. This effect is attributed to a nonclassical out-of-plane surface response, extending beyond pure spill-out effects. Our experiments pave the way for electrically driven plasmonic modulators and metasurfaces, leveraging control over nonclassical surface effects.
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