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Multiple Magnetic Mode-Based Fano Resonance in Split-Ring Resonator/ Disk Nanocavities

机译:开口环谐振器/圆盘纳米腔中基于多磁模式的Fano谐振

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Plasmonic Fano resonance, enabled by the weak interaction between a bright super-radiant and a subradiant resonance mode, not only is fundamentally interesting, but also exhibits potential applications ranging from extraordinary optical transmission to biosensing. Here, we demonstrate strong Fano resonances in split-ring resonators/disk (SRR/D) nanocavities. The high-order magnetic modes are observed in SRRs by polarizationresolved transmission spectroscopy. When a disk is centered within the SRRs, multiple high-order magnetic modes are coupled to a broad electric dipole mode of SRR/D, leading to significant Fano resonance spectral features in near-IR regime. The strength and line shape of the Fano resonances are tuned through varying the SRR split-angle and interparticle distance between SRR and disk. Finite-difference-time-domain (FDTD) simulations are conducted to understand the coupling mechanism, and the results show good agreement with experimental data. Furthermore, the coupled structure gives a sensitivity of ~282 nm/RIU with a figure of merit ~4.
机译:明亮的超辐射和亚辐射共振模式之间的弱相互作用使等离子Fano共振不仅从根本上引起人们的兴趣,而且还展示了从超凡光学传输到生物传感的潜在应用。在这里,我们展示了开环共振器/磁盘(SRR / D)纳米腔中的强Fano共振。通过极化分辨透射光谱法在SRR中观察到高阶磁模。当磁盘在SRR内居中时,多个高阶磁模式耦合到SRR / D的宽电偶极子模式,从而在近红外范围内产生显着的Fano共振频谱特征。通过改变SRR分裂角和SRR与圆盘之间的粒子间距离,可以调整Fano共振的强度和线形。进行时域有限差分时域(FDTD)仿真,以了解耦合机理,结果与实验数据吻合良好。此外,耦合结构的灵敏度为〜282 nm / RIU,品质因数为〜4。

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