Abstract:We propose a lamina-shaped metamaterial absorber based on the coherently coupled weak resonances of high-order Helmholtz resonators in this work. Such an ultra-thin lamina metamaterial can achieve broadband tunable absorption (maximal absorption> 0.9), which exhibits near-perfect ventilation performance (ventilated area ratio> 0.8, ratio of wind velocity> 0.95). Benefiting from coherently coupled weak resonances between units with different structure parameters, the lamina metamaterial presents a broa… Show more
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