Ultra-flexible multiband terahertz metamaterial absorber for conformal geometry applications

R Yahiaoui, JP Guillet, F de Miollis, P Mounaix - Optics letters, 2013 - opg.optica.org
Optics letters, 2013opg.optica.org
Standard optical lithography relying on clean room and microelectronic facilities is used to
fabricate a thin-flexible metamaterial absorber, designed to operate at submillimeter
wavelengths over the 0.1–1 THz frequency band. Large terahertz absorption has been
demonstrated numerically and through experimental measurements with a maximum level
of about 80%. We put emphasis in this present work on the use of single-sized “meta-cells”
to achieve multiple absorption peaks. Furthermore, the use of a thin-flexible dielectric spacer …
Standard optical lithography relying on clean room and microelectronic facilities is used to fabricate a thin-flexible metamaterial absorber, designed to operate at submillimeter wavelengths over the 0.1–1 THz frequency band. Large terahertz absorption has been demonstrated numerically and through experimental measurements with a maximum level of about 80%. We put emphasis in this present work on the use of single-sized “meta-cells” to achieve multiple absorption peaks. Furthermore, the use of a thin-flexible dielectric spacer makes it promising for stealth technology applications in order to disguise objects and make them less visible to radar and other detection methods.
opg.optica.org
以上显示的是最相近的搜索结果。 查看全部搜索结果