Multiband infrared emissions limited in the grazing angle from metal-dielectric-metal metamaterials
Author(s) -
Rihab Benlyas,
Makoto Shimizu,
Keiya Otomo,
Zhen Liu,
Hiroo Yugami
Publication year - 2022
Publication title -
optics express
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.394
H-Index - 271
ISSN - 1094-4087
DOI - 10.1364/oe.450802
Subject(s) - metamaterial , optics , materials science , dielectric , wavelength , infrared , electromagnetic radiation , selective surface , optoelectronics , radiation , thermal radiation , absorption (acoustics) , isotropy , physics , thermodynamics
Thermal radiation management remains a challenge because of the incoherent and isotropic nature of electromagnetic waves. In this study, a multiband and angular-selective infrared emitter, consisting of a simple one-dimensional (1D) metal-dielectric-metal metamaterial, is demonstrated. Although this structure has been well known as spectrally selective emitters, we analytically reveal that when the dielectric layer thickness is much smaller than the wavelength of interest (< 1/10), directive emission at nearly equal to the grazing angles (> 80°) can be obtained at multiple resonant wavelengths. As the absorption peaks can be entirely characterized by geometrical parameters, this angular selective technology offers flexible control of thermal radiation and can be adjusted to specific applications.
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