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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >An ultrahigh Q-factor dual-band terahertz perfect absorber with a dielectric grating slit waveguide for sensing
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An ultrahigh Q-factor dual-band terahertz perfect absorber with a dielectric grating slit waveguide for sensing

机译:超高压Q系子双频Terahertz完美吸收器,具有电介质光栅狭缝波导,用于感测

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摘要

The terahertz (THz) perfect absorber with ultra-narrow bandwidth at near-unity absorbance has been a challenging issue due to mutual restrictions of elemental requirements in the design. Here, we propose an extremely sharp dual-band THz perfect absorber with an ultrahigh Q-factor and near-unity absorbance by incorporating a Fabry-Perot micro-cavity into a dielectric grating slit waveguide. Full-wave simulation demonstrates that the proposed structure not only achieves ultra-narrow band perfect absorption with an ultrahigh Q-factor of 4600 in the THz regime, but it also shows extraordinary sensing performance with a record figure of merit (FOM) of 2415 at THz frequencies. The optimized guided mode resonance leads to the ultrahigh Q-factor through suppression of the absorption and radiation losses. The enhanced interaction between the cavity localized fields and the analytes significantly improves the THz sensing capability. Our design approach shows a promising future in simple and inexpensive THz biochemical sensors.
机译:由于在设计中的元素要求的相互限制,Terahertz(Thz)具有超窄带宽的完美吸收器是一个具有挑战性的问题。在这里,我们通过将法布里 - 珀罗微腔结合到电介质光栅狭缝波导中,提出了一种极锋利的双带THz完美的吸收器,其具有超高Q系数和近乎统一的吸光度。全波仿真表明,建议的结构不仅达到超窄频段的完美吸收,在THZ制度中的超高Q系数为4600,但它也显示出非凡的感应性能,具有2415的创纪录(FOM)的记录图。 THz频率。优化的引导模式共振通过抑制吸收和放射损失来导致超高Q系数。腔局部区域和分析物之间的增强相互作用显着提高了THz传感能力。我们的设计方法在简单廉价的THz生物化学传感器中显示了未来的未来。

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