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由与BFN单片集成的LWA阵列实现的光子辅助二维太赫兹波束控制。

Photonic-assisted 2-D terahertz beam steering enabled by a LWA array monolithically integrated with a BFN.

作者信息

Haddad Thomas, Biurrun-Quel Carlos, Lu Peng, Tebart Jonas, Sievert Benedikt, Makhlouf Sumer, Grzeslo Marcel, Teniente Jorge, Del-Río Carlos, Stöhr Andreas

出版信息

Opt Express. 2022 Oct 10;30(21):38596-38612. doi: 10.1364/OE.468200.

Abstract

A novel photonic-assisted 2-D Terahertz beam steering chip using only two tuning elements is presented. The chip is based on an array of three leaky wave antennas (LWAs) with a monolithically integrated beamforming network (BFN) on a 50 µm-thick indium phosphide substrate. The THz beam angle in elevation (E-plane) is controlled via optical frequency tuning using a tunable dual-wavelength laser. An optical delay line is used for azimuth (H-plane) beam control. The simulated beam scanning range is 92° in elevation for a frequency sweep from 0.23 THz to 0.33 THz and 69.18° in azimuth for a time delay of 3.6 ps. For the frequency range from 0.26 THz to 0.32 THz, it is confirmed experimentally that the THz beam scans from -12° to +33°, which is in good agreement with the numerical simulations. The beam direction in azimuth scans with a total angle of 39° when applying a delay difference of 1.68 ps. A good agreement is found between theoretically predicted and experimentally determined THz beam angles with a maximum angle deviation below 5°. The experimental scanning angles are limited due to the mechanical constraints of the on-wafer probes, the on-chip integrated transition and the bandwidth of the THz receiver LNA. The mechanical limitation will be overcome when using a packaged chip.

摘要

本文提出了一种仅使用两个调谐元件的新型光子辅助二维太赫兹波束转向芯片。该芯片基于由三个漏波天线(LWA)组成的阵列,并在厚度为50 µm的磷化铟衬底上单片集成了波束形成网络(BFN)。通过使用可调谐双波长激光器进行光频率调谐来控制太赫兹波束在仰角(E平面)的角度。使用光学延迟线进行方位角(H平面)波束控制。对于从0.23太赫兹到0.33太赫兹的频率扫描,模拟的波束在仰角方向的扫描范围为92°,对于3.6皮秒的时间延迟,在方位角方向的扫描范围为69.18°。对于0.26太赫兹到0.32太赫兹的频率范围,实验证实太赫兹波束从-12°扫描到+33°,这与数值模拟结果吻合良好。当施加1.68皮秒的延迟差时,方位角扫描中的波束方向总角度为39°。理论预测的太赫兹波束角度与实验确定的角度之间有良好的一致性,最大角度偏差低于5°。由于片上探针、片上集成过渡以及太赫兹接收器低噪声放大器的带宽的机械限制,实验扫描角度受到限制。使用封装芯片时将克服机械限制。

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