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Updated: Oct 22, 2025

Simulation, Fabrication and Characterization of THz Metamaterial Absorbers
Published on: December 27, 2012
Tungsten Based Spectrally Selective Absorbers with Anisotropic Rough Surface Texture.
Niloufar Pirouzfam1, Kursat Sendur1
1Faculty of Engineering and Natural Sciences, Sabanci University, Istanbul 34956, Turkey.
Anisotropic random rough Tungsten surfaces achieve over 95% broadband spectral absorption for high-temperature applications. Optimizing surface parameters enhances absorption in visible and near-infrared regions.
Area of Science:
- Materials Science
- Optics
- Surface Engineering
Background:
- Spectrally selective absorbers are crucial for thermophotovoltaic devices and solar absorbers.
- High operating temperatures necessitate thermo-mechanically stable and broadband absorbers.
Purpose of the Study:
- To demonstrate anisotropic random rough surfaces for broadband spectral absorption on Tungsten.
- To investigate the impact of surface topography on spectral absorptance.
Main Methods:
- Fabrication of anisotropic random rough surfaces on Tungsten.
- Analysis of spectral absorptance in visible (VIS) and near-infrared (NIR) regions.
- Correlation of absorptance with surface parameters like correlation length and RMS height.
Main Results:
- Optimized random rough surfaces achieve over 95% absorption.
- Anisotropic surfaces broaden the high absorption bandwidth.
- Absorption enhancements of 47% (isotropic) and 52% (anisotropic) were observed in VIS and NIR regions.
Conclusions:
- Anisotropic random rough surfaces offer a viable solution for broadband spectrally selective absorption on Tungsten.
- Surface parameter optimization is key to achieving high absorptance and bandwidth.
- Tungsten surfaces with tailored roughness show promise for demanding thermal applications.
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