An interference coating of metamaterial as an ultrathin light absorber in the violet-to-infrared regime
Author:
Publisher
The Optical Society
Subject
Atomic and Molecular Physics, and Optics
Reference21 articles.
1. Perfect Metamaterial Absorber
2. Plasmonic blackbody: Strong absorption of light by metal nanoparticles embedded in a dielectric matrix
3. Improved broadband and quasi-omnidirectional anti-reflection properties with biomimetic silicon nanostructures
4. Experimental Observation of an Extremely Dark Material Made By a Low-Density Nanotube Array
5. Optical thin-film materials with low refractive index for broadband elimination of Fresnel reflection
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