首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >An ultra-broadband terahertz metamaterial absorber based on split rings array and island-shape structures
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An ultra-broadband terahertz metamaterial absorber based on split rings array and island-shape structures

机译:基于分圈阵列和岛状结构的超宽带太赫兹超材料吸收器

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An ultra-broadband absorber is achieved by constructing novel island-shape structures on a single-layered broadband absorber. The single-layered absorber contains four same sized metallic split rings with different heights of the base. Its absorption goes beyond 98% from 1.82 THz to 3.70 THz and the full width at half maximum (FWHM) is 102.3% (from 1.47 THz to 4.55 THz), much better than these achieved by assembling multiple nested resonators. Then, by stacking novel island-shape structures over the single-layered absorber, we can excite 1-order magnetic response to precisely add a new peak near the broadband and enhance the bandwidth. The multi-layered absorber covers a bandwidth of 3.51 THz (the absorption over 90% from 1.23 THz to 4.74 THz) and the FWHM is up to 139.7%, far larger than previous reported results. It also performs well at considerably large oblique incident angles. Moreover, the island-shape structures have the potential to be applied in some other single-layered absorbers to widen their bandwidth.
机译:通过在单层宽带吸收器上构造新的岛状结构来实现超宽带吸收器。单层吸收器包含四个与底座不同高度相同的尺寸金属分流环。它的吸收从1.82THz到3.70THz的吸收超过98%,半最大(FWHM)的全宽度为102.3%(从1.47 THz到4.55至446六),比通过组装多个嵌套谐振器实现的更好。然后,通过在单层吸收器上堆叠新的岛状结构,我们可以激发1阶磁响应,精确地在宽带附近添加新峰值并增强带宽。多层吸收器涵盖3.51六茨的带宽(从1.23THz到4.74至4.74至4.74六个超过90%),而FWHM高达139.7%,远远大于以前报告的结果。它也以大大的倾斜入射角表现良好。此外,岛状结构具有施加在一些其他单层吸收器中以加宽其带宽。

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