Harmonic-assisted electromagnetically induced transparency-like with multiband polarization insensitivity on metamaterials
Abstract
In this work, we present the design and analysis of a dual-layered metamaterial structure exhibiting multi-band, polarization-insensitive electromagnetically induced transparency (EIT)-like effects. Through a combination of full wave simulations and multipole scattering theory, the underlying physical mechanism is identified as the coherent coupling between bright (dipolar) and quasi-bright (higher order harmonics) eigenmodes, facilitated by the generation and interference of higher order harmonics. A comprehensive parametric study elucidates the correlation between geometric dimensions and the spectral positions and quality factors of the resulting EIT-like windows. Experimental verification conducted in a microwave anechoic chamber confirms the simulated transmission spectra demonstrating agreement. Furthermore, the structure’s performance as a refractive index sensor is quantitatively assessed, revealing sensitivity and figure of merit. These findings demonstrated the potential of the proposed metamaterial for advanced applications in multi-frequency filtering and integrated photonic sensing.
Article Details
Journal Info
Journal of Applied Physics
American Institute of Physics
Authors (6)
Yuhang Yuan
Sichen Fan
School of Information Engineering, Huangshan University 1 , Huangshan 245041,
Fengzhi Yin
School of Information Engineering, Huangshan University 1 , Huangshan 245041,
Yuan Xu
Renxia Ning
School of Information Engineering, Huangshan University 1 , Huangshan 245041,
Ningye He
School of Information Engineering, Huangshan University 1 , Huangshan 245041,