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首页> 外文期刊>Terahertz Science and Technology, IEEE Transactions on >InP-Based THz Beam Steering Leaky-Wave Antenna
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InP-Based THz Beam Steering Leaky-Wave Antenna

机译:基于INP的THz光束转向泄漏波天线

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摘要

For mobile THz applications, integrated beam steering THz transmitters are essential. Beam steering approaches using leaky-wave antennas (LWAs) are attractive in that regard since they do not require complex feeding control circuits and beam steering is simply accomplished by sweeping the operating frequency. To date, only a few THz LWAs have been reported. These LWAs are based on polymer or graphene substrates and thus, it is quite impossible to monolithically integrate these antennas with state-of-the-art indium phosphide (InP)-based photonic or electronic THz sources and receivers. Therefore, in this article, we report on an InP-based THz LWA for the first time. The developed and fabricated THz LWA consists of a periodic leaking microstrip line integrated with a grounded coplanar waveguide to microstrip line (GCPW-MSL) transition for future integration with InP-based photodiodes. For fabrication, a substrate-transfer process using silicon as carrier substrate for a 50-mu m thin InP THz antenna chip has been established. By changing the operating frequency from 230 to 330 GHz, the fabricated antenna allows to sweep the beam direction quasi-linearly from -46 degrees to 42 degrees, i.e., the total scanning angle is 88 degrees. The measured average realized gain and 3-dB beam width of a 1.5-mm wide InP LWA are similar to 11 dBi and 10 degrees. This article furthermore discusses the use of the fabricated LWA for THz interconnects.
机译:对于移动THz应用,集成光束转向THz发射器是必不可少的。使用泄漏波天线(LWAS)的光束转向方法在这方面具有吸引力,因为它们不需要复杂的馈电控制电路,并且通过扫描工作频率来简单地完成光束转向。迄今为止,只报告了几个星期六的Lwas。这些Lwas基于聚合物或石墨烯基板,因此,通过最新的光子或电子THz来源和接收器将这些天线整体整合这些天线。因此,在本文中,我们第一次向基于INP的THZ LWA报告。开发和制造的THz LWA包括与接地的共面波导集成到微带线(GCPW-MSL)转换的周期性泄漏微带线,以便将来与基于INP的光电二极管集成。为了制造,已经建立了使用硅作为用于50μm薄的InP THz天线芯片的载体基板的基板转印过程。通过将工作频率从230改变为330 GHz,制造的天线允许将光束方向从-46度扫描到42度,即总扫描角度为88度。测量的平均实现增益和1.5mm宽InP LWA的3-DB光束宽度类似于11 dBi和10度。本文还讨论了使用制造的LWA用于THz互连。

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