期刊论文详细信息
Nanophotonics
Fabrication robustness in BIC metasurfaces
Kühne Julius1  Maier Stefan A.1  Weber Thomas1  Tittl Andreas1  Kühner Lucca1  Wang Juan1 
[1] Chair in Hybrid Nanosystems, Ludwig-Maximilians-Universität München, Königinstr. 10, 80539München, Germany;
关键词: all-dielectric;    bound states in the continuum;    nanofabrication;    nanophotonics;    quality factor;   
DOI  :  10.1515/nanoph-2021-0391
来源: DOAJ
【 摘 要 】

All-dielectric metasurfaces supporting photonic bound states in the continuum (BICs) are an exciting toolkit for achieving resonances with ultranarrow linewidths. However, the transition from theory to experimental realization can significantly reduce the optical performance of BIC-based nanophotonic systems, severely limiting their application potential. Here, we introduce a combined numerical/experimental methodology for predicting how unavoidable tolerances in nanofabrication such as random geometrical variations affect the performance of different BIC metasurface designs. We compare several established all-dielectric BIC unit cell geometries with broken in-plane inversion symmetry including tilted ellipses, asymmetric double rods, and split rings. Significantly, even for low fabrication-induced geometrical changes, both the BIC resonance amplitude and its quality factor (Q-factor) are significantly reduced. We find that the all-dielectric ellipses maintain the highest Q-factors throughout the geometrical variation range, whereas the rod and split ring geometries fall off more quickly. The same behavior is confirmed experimentally, where geometrical variation values are derived from automated processing of sets of scanning electron microscopy (SEM) images. Our methodology provides crucial insights into the performance degradation of BIC metasurfaces when moving from simulations to fabricated samples and will enable the development of robust, high-Q, and easy to manufacture nanophotonic platforms for applications ranging from biomolecular sensing to higher harmonic generation.

【 授权许可】

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