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等离子体超表面谐振器的太赫兹磁响应:起源与取向依赖性

Terahertz magnetic response of plasmonic metasurface resonators: origin and orientation dependence.

作者信息

Tesi Lorenzo, Hrtoň Martin, Bloos Dominik, Hentschel Mario, Šikola Tomáš, van Slageren Joris

机构信息

Institute of Physical Chemistry, University of Stuttgart, Pfaffenwaldring 55, 70569, Stuttgart, Germany.

Institute of Physical Engineering and Central European Institute of Technology, Brno University of Technology, Technická 2, 61669, Brno, Czech Republic.

出版信息

Sci Rep. 2024 Jul 3;14(1):15305. doi: 10.1038/s41598-024-65804-9.

Abstract

The increasing miniaturization of everyday devices necessitates advancements in surface-sensitive techniques to access phenomena more effectively. Magnetic resonance methods, such as nuclear or electron paramagnetic resonance, play a crucial role due to their unique analytical capabilities. Recently, the development of a novel plasmonic metasurface resonator aimed at boosting the THz electron magnetic response in 2D materials resulted in a significant magnetic field enhancement, confirmed by both numerical simulations and experimental data. Yet, the mechanisms driving this resonance were not explored in detail. In this study, we elucidate these mechanisms using two semi-analytical models: one addressing the resonant behaviour and the other examining the orientation-dependent response, considering the anisotropy of the antennas and experimental framework. Our findings contribute to advancing magnetic spectroscopic techniques, broadening their applicability to 2D systems.

摘要

日常设备日益小型化,这就需要改进表面敏感技术,以便更有效地获取相关现象。磁共振方法,如核磁共振或电子顺磁共振,因其独特的分析能力而发挥着关键作用。最近,一种旨在增强二维材料中太赫兹电磁响应的新型等离子体超表面谐振器的开发,导致了显著的磁场增强,这一点得到了数值模拟和实验数据的证实。然而,驱动这种共振的机制尚未得到详细探究。在本研究中,我们使用两个半解析模型阐明了这些机制:一个用于处理共振行为,另一个用于考虑天线的各向异性和实验框架来研究方向依赖性响应。我们的研究结果有助于推进磁光谱技术,拓宽其在二维系统中的适用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d3c/11222506/bd630cb3b9dc/41598_2024_65804_Fig1_HTML.jpg

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