Title :
Temperature Controlled Perfect Absorber Based on Metal-Superconductor-Metal Square Array
Author :
Lee, Huang-Ming ; Wu, Jong-Ching
Abstract :
The optical properties of a single-band near-perfect absorber are studied numerically by using a finite element method in conjunction with a two-fluid model. Based on a metal-superconductor-metal (MSM) scheme, the proposed structure comprises a lossless superconducting layer sandwiched by a silver square array and ground silver plane. The simulation results clearly show that near-perfect absorption band can be realized and promptly tuned from green light to red light by the temperature of the system. The designed MSM absorber also presents the characteristics of polarization insensitivity and wide-angle incidence up to 50 degree. This prompt manipulation of the near-perfect absorption band makes this MSM absorber a great potential candidate when designing an in-situ absorption band selector in the visible light wavelength regime.
Keywords :
finite element analysis; metal-semiconductor-metal structures; metamaterials; MSM scheme; finite element method; lossless superconducting laye; metal-superconductor-metal square array; near perfect absorption band; polarization insensitivity; single band near perfect absorber; temperature controlled perfect absorber; two fluid model; wide angle incidence; Absorption; Arrays; Optical polarization; Optical sensors; Silver; Superconducting magnets; Superconducting microwave devices; Dipolar resonance; perfect absorber; superconductor;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2012.2196416