Coherent coupling of localized surface plasmons and surface plasmons in borophene-based metamaterial

IF 2.7 Q2 PHYSICS, CONDENSED MATTER Micro and Nanostructures Pub Date : 2024-07-26 DOI:10.1016/j.micrna.2024.207941
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Abstract

The strong coherent coupling in different electromagnetic modes can control the light-matter interaction more conveniently. Here, we theoretically researched the hybridization between the borophene surface plasmon (BSP) mode and the borophene localized surface plasmon (BLSP) mode in borophene grating structure. This coupling effect leads to the emergence of multiple hybrid modes. The absorption spectra of the system are investigated through finite difference time domain (FDTD) simulation and coupled oscillator model (COM). Results show that the coherent coupling of BSP and BLSP can be achieved by adjusting the carrier density of the borophene gratings. A Rabi splitting effect with frequency of 21.6 THz can be observed. Furthermore, we investigated the effects of geometric structural parameters, incident angle, and relaxation time on the correlated coupling spectra. Our work may deepen the understanding of light–matter interactions and provide a reference for borophene-based active photonic devices in the near-infrared region.

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硼吩基超材料中局部表面质子与表面质子的相干耦合
不同电磁模式的强相干耦合可以更方便地控制光物质相互作用。在此,我们从理论上研究了硼吩光栅结构中的硼吩表面等离子体(BSP)模式和硼吩局域表面等离子体(BLSP)模式之间的杂化。这种耦合效应导致了多种混合模式的出现。通过有限差分时域(FDTD)模拟和耦合振荡器模型(COM)研究了系统的吸收光谱。结果表明,通过调整硼吩光栅的载流子密度,可以实现 BSP 和 BLSP 的相干耦合。可以观察到频率为 21.6 THz 的拉比分裂效应。此外,我们还研究了几何结构参数、入射角和弛豫时间对相关耦合光谱的影响。我们的工作可能会加深对光物质相互作用的理解,并为近红外区域基于硼吩的有源光子器件提供参考。
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