Article ID Journal Published Year Pages File Type
1495353 Optical Materials 2013 6 Pages PDF
Abstract

We present asymmetric and symmetric couplings within a pair of C-shaped resonators (CSRs). The former shows that a typical and prominent plasmon-induced transparency (PIT) spectral response can be observed and it stems from asymmetrically coupled resonance (ACR) between the subradiant and superradiant modes due to exactly identical resonance frequency but different quality factors (Q-factor). The mechanism of such induced transparency is elucidated well by resonant hybridization and the induced currents within the CSRs. Simultaneously, we find that PIT-like effect can also be achieved in symmetric CSRs, symmetrically coupled resonance (SCR) between the subradiant and superradiant modes also give rise to transparency window. Essentially, the phase coupling of near-field, besides symmetry or asymmetry, is the crux of the PIT. Comparing the transparency window in asymmetric coupling, the PIT-like effect in symmetric coupling becomes less strong than the former. We consider that a broken symmetry is not the only prerequisite for PIT-like effect; but it plays an important role of prominent PIT-like transparency window. This not only sharpens our understanding of the existing concept, but also provides a profound insight into the plasmonic coherent interference in the near-field zone.

► We proposed asymmetric and symmetric couplings within a pair of C-shaped resonators. ► PIT-like effect is verified both in asymmetric and symmetric C-shaped metamaterials. ► In comparison, more prominent PIT-like effect of ACR than SCR is observed. ► Broken symmetry is not the only prerequisite for PIT-like effect. ► Broken symmetry plays an important role of prominent PIT effect.

Related Topics
Physical Sciences and Engineering Materials Science Ceramics and Composites
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