基于环形频率选择表面的宽带线圆和线交叉角稳定太赫兹反射偏振器

Mohammad Abdul Shukoor, Tejas Shibu Bini, Nissan Kunju, Sukomal Dey
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摘要

本文介绍了一种新型的多波段双偏振反射偏振器,该偏振器在太赫兹波段实现了线交叉和线圆转换的双重操作。该单元电池由一层薄薄的金膜组成,在聚酰胺基板上涂有改进的环形频率选择表面(FSS),并以金膜接地,以进行反射设计。在正常入射下,该设计在0.62-0.65 THz、0.98-1.10 THz和1.74-1.80 THz范围内进行线性交叉转换,极化转化率(PCR)最小值分别为90%。此外,它还演示了轴比(= 3dB)从0.58-0.59 THz, 0.69-0.90 THz, 1.18-1.67 THz和1.87-1.90THz的线性到圆转换。多重等离子共振是这些转换背后的原因,这是可视化的表面电流分布分析。器件性能稳定的横向电(TE)和横向磁(TM)入射高达45°。该变换器的双极化线交叉和线圆转换对实时太赫兹应用有显著影响。
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Wideband Linear-Circular and Linear-Cross Angular Stable THz Reflective Polarizer with Circular Ring Based Frequency Selective Surface
A novel multiband dual-polarized reflective polarizer is demonstrated in this article, which performs dual-operation like linear-cross and linear-circular conversions in the THz regime. The unitcell consists of a thin gold film coated modified circular rings-based Frequency Selective Surface (FSS) on top of a polyamide substrate grounded with a gold film to make the reflective design. Under normal incidence, the design performs the linear-cross conversion from 0.62-0.65 THz, 0.98-1.10 THz, and 1.74-1.80 THz, with a 90% minimum Polarization Conversion Ratio (PCR), respectively. In addition, it also demonstrates linear to circular conversion with Axial Ratio (= 3dB) from 0.58-0.59 THz, 0.69-0.90 THz, 1.18-1.67 THz, and 1.87-1.90THz. Multiple plasmonic resonances are the reason behind these conversions, which are visualized with surface current distribution analysis. The device performance is stable for Transverse Electric (TE) and Transverse Magnetic (TM) incidences up to 45°. The proposed converter's dual-polarized linear-cross and linear-circular conversion influence real-time THz applications significantly.
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