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Ultra-Long Compact Optical Polymeric Array Waveguide True-Time-Delay Line Devices

机译:超长紧凑型光学聚合物阵列波导真时延线设备

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摘要

New types of UV curable polymeric ultra-long array waveguide true-time-delay (TTD) lines for wideband phased array antennas (PAA) are designed and fabricated using direct UV photolithography process. The unique feature of the approach consists of different 1$,times {rm N}$ waveguide splitters, low-loss S-bend cosine waveguide connectors, and 180$^{circ}$ array bend waveguides with a constant spacing difference $Delta {rm R}$ between adjacent waveguides. The delay time increments are measured from 1.4 ns to 6.6 ps. 1$,times,$ 2, 1$,times,$ 4, 1$,times,$ 8 polymeric star coupler devices are also successfully prepared. The bend loss of different curved waveguides is calculated and analyzed by the 3-D semivectorial beam propagation method (BPM). The optimized structural properties of the UV curable polymeric waveguides and fabrication procedures are demonstrated. The near-infrared field guided-mode patterns of the devices are obtained. The new technique can be well suited for realizing absence of “beam squint” in the antenna pattern as its frequency is switched from L(1–2.6 GHz) to X(8–12 GHz) band.
机译:使用直接UV光刻工艺设计和制造了用于宽带相控阵天线(PAA)的新型UV可固化聚合物超长阵列波导实时延迟(TTD)线。该方法的独特之处在于,包括不同的1 $,倍数{rm N} $波导分路器,低损耗S弯余弦波导连接器,以及具有恒定间距差$ Delta {的180 $ ^ {circ} $阵列弯曲波导相邻波导之间的rm R} $。延迟时间增量的测量范围为1.4 ns至6.6 ps。还成功地制备了1美元,2美元,1美元,4美元,1美元,8美元聚合物星形耦合器装置。通过3-D半矢量波束传播方法(BPM)计算和分析了不同弯曲波导的弯曲损耗。展示了可紫外线固化聚合物波导的最佳结构性能和制造程序。获得了设备的近红外场引导模式图案。由于其频率从L(1–2.6 GHz)切换到X(8–12 GHz)频段,因此该新技术非常适合实现天线方向图中的“波束斜视”。

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