首页> 外文会议>2017 11th International Congress on Engineered Materials Platforms for Novel Wave Phenomena >Ultra-thin metasurface absorbers for spectro-polarimetric radiation detectors: In-depth electromagnetic analysis and practical design for subterahertz band
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Ultra-thin metasurface absorbers for spectro-polarimetric radiation detectors: In-depth electromagnetic analysis and practical design for subterahertz band

机译:用于光谱偏振辐射探测器的超薄超表面吸收器:太赫兹波段的深入电磁分析和实用设计

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摘要

We present the results of extensive theoretical and experimental investigations of high-performance ultra-thin metasurface-based radiation absorbers designed for narrow-band operation at subterahertz (subTHz) frequencies and intended for integration with spectro-polarimetric sensors of a thermal type. Implemented in a three-layered configuration with a capacitive frequency selective surface (FSS) backed by a grounded dielectric slab, the absorbers are analyzed in terms of minimizing their thickness-to-wavelength (d / λ) ratio and absorption bandwidth, while maximizing the FSS unit cells subwavelengthness and free dispersion range for absorption spectra. A choice of optimal material parameters and a role of near-field “FSS - ground plane” coupling are discussed and an optimal FSS pattern for a “spectrometric” absorber is deduced. Supplemented with experimental measurements in the range of 0.1-1 THz demonstrating feasibility of attaining d / λ~1/200 at the bandwidth of several percent, original cost-effective metasurface-absorber-based schemes for uncooled thermal subTHz sensing with spectrometric, polarimetric, and imaging capabilities are also considered.
机译:我们介绍了高性能的超薄超表面基于辐射的吸收体的广泛理论和实验研究的结果,这些吸收体设计用于以太赫兹(subTHz)频率进行窄带操作,并打算与热型光谱偏振传感器集成在一起。在三层结构中实现,电容性频率选择表面(FSS)由接地的电介质板作为支撑,对吸收体进行了分析,以使其厚度/波长(d /λ)比和吸收带宽最小,同时最大程度地减小FSS晶胞的亚波长和吸收光谱的自由色散范围。讨论了最佳材料参数的选择以及近场“ FSS-地平面”耦合的作用,并推导了“光谱”吸收体的最佳FSS模式。辅之以0.1-1 THz范围内的实验测量值,证明了在百分之几的带宽上达到d /λ〜1/200的可行性,原始的,具有成本效益的基于表面吸收剂的方案可用于非冷却的热次THz传感,并具有光谱,极化,并且还考虑了成像功能。

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