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300-GHz Dual-Beam Frequency-Selective On-Chip Antenna for High Tc Superconducting Receivers

机译:高T c 超导接收器的300GHz双波束频率选择片上天线

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This paper presents a novel terahertz (THz) on-chip antenna design for high-T _c superconducting (HTS) heterodyne receiver frontends. The antenna includes a two-element ring-slot array in conjunction with a hemispherical lens, which generates highly-directional dual radiation beams with stable angular separation, thus significantly facilitating the quasi-optics design for coupling radio-frequency (RF) and local oscillator (LO) THz signals. Besides, a double-layered band-pass frequency selective surface (FSS) is designed, and integrated in the THz on-chip antenna to filter out external interferences other than 300-GHz band for maximizing the HTS receiver frontend`s noise performance. Numerical simulation shows that the antenna achieves a coupling efficiency of -3.5 dB and a realized gain of 13.5 dB at 300 GHz, and exhibits very stable radiation performance over the whole operating bandwidth of 283 to 316 GHz.
机译:本文提出了一种新颖的太赫兹(THz)片上天线设计,用于高T_c超导(HTS)外差接收器前端。该天线包括一个与半球面透镜一起构成的两元件环形槽阵列,该阵列可产生具有稳定角间隔的高方向性双辐射束,从而大大简化了用于耦合射频(RF)和本地振荡器的准光学设计(LO)太赫兹信号此外,还设计了一个双层带通频率选择表面(FSS),并将其集成在THz片上天线中,以滤除300 GHz频段以外的外部干扰,从而最大限度地提高HTS接收机前端的噪声性能。数值模拟表明,该天线在300 GHz时达到-3.5 dB的耦合效率和13.5 dB的实际增益,并且在283至316 GHz的整个工作带宽上表现出非常稳定的辐射性能。

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