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Integrated ordered, and disordered nanopillar/nanohole arrays enable broadband absorption in the wavelength range (300 1100 nm) above the bandgap with an average absorptance of about 97%.
The magnetic field distribution are investigated to interpret the physical mechanism of broadband absorption.
With the optimization of the structural parameters, resonant peaks are merged into a broadband absorption spectrum.
The broadband absorption effect of stacked metal-dielectric grating structures is studied.
Utilizing the symmetrical geometry of dishes, polarization-insensitivity of the broadband absorption was gained.
In order to achieve broadband absorption, we developed PDMS/Ag PNPs) multilayers with graded PNP size.
With perfect and broadband absorption, metamaterial absorbers play an important role in stealth technology.
The composite structures show broadband absorption property verified by both numerical simulation and experimental measurement.
The broadband absorption under normal incidence can be achieved for both TE and TM polarizations.
The electrical field intensity distributions are studied to disclose the broadband absorption mechanism.
Finally, the influence of the angle of incidence wave on the broadband absorption was examined.
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