Gölz Thorsten, Baù Enrico, Aigner Andreas, Mancini Andrea, Barkey Martin, Keilmann Fritz, Maier Stefan A, Tittl Andreas
Chair in Hybrid Nanosystems, Nanoinstitute Munich and Center for Nanoscience (CeNS), Faculty of Physics, Ludwig Maximilian University of Munich, 80539, Munich, Germany.
Centre for Nano Science and Technology, Italian Institute of Technology Foundation, Via Rubattino 81, Milan, 20134, Italy.
Adv Mater. 2024 Sep;36(38):e2405978. doi: 10.1002/adma.202405978. Epub 2024 Aug 2.
Photonic metasurfaces offer exceptional control over light at the nanoscale, facilitating applications spanning from biosensing, and nonlinear optics to photocatalysis. Many metasurfaces, especially resonant ones, rely on periodicity for the collective mode to form, which makes them subject to the influences of finite size effects, defects, and edge effects, which have considerable negative impact at the application level. These aspects are especially important for quasi-bound state in the continuum (BIC) metasurfaces, for which the collective mode is highly sensitive to perturbations due to high-quality factors and strong near-field enhancement. Here, the mode formation in quasi-BIC metasurfaces on the individual resonator level using scattering scanning near-field optical microscopy (s-SNOM) in combination with a new image processing technique, is quantitatively investigated. It is found that the quasi-BIC mode is formed at a minimum size of 10 × 10-unit cells much smaller than expected from far-field measurements. Furthermore, it is shown that the coupling direction of the resonators, defects and edge states have pronounced influence on the quasi-BIC mode. This study serves as a link between the far-field and near-field responses of metasurfaces, offering crucial insights for optimizing spatial footprint and active area, holding promise for augmenting applications such as catalysis and biospectroscopy.
光子超表面能够在纳米尺度上对光进行卓越的控制,从而推动了从生物传感、非线性光学到光催化等一系列应用的发展。许多超表面,尤其是谐振型超表面,依赖周期性来形成集体模式,这使得它们容易受到有限尺寸效应、缺陷和边缘效应的影响,而这些效应在应用层面具有相当大的负面影响。对于连续域中的准束缚态(BIC)超表面而言,这些方面尤为重要,因为其集体模式由于高品质因子和强烈的近场增强而对微扰高度敏感。在此,利用散射扫描近场光学显微镜(s-SNOM)结合一种新的图像处理技术,在单个谐振器层面上对准BIC超表面中的模式形成进行了定量研究。研究发现,准BIC模式在最小尺寸为10×10个单元胞时形成,这比远场测量预期的要小得多。此外,研究表明谐振器、缺陷和边缘态的耦合方向对准BIC模式有显著影响。这项研究搭建了超表面远场和近场响应之间的桥梁,为优化空间占用和有源区提供了关键见解,有望促进催化和生物光谱学等应用的发展。