论文标题
硅整合的微波光子波束形式
A silicon integrated microwave photonic beamformer
论文作者
论文摘要
基于光学真实时延迟线(OTTDL)的光学波束形成网络(OBFN)是众所周知的,是由于斜梁的斜视而解决传统电子阶段阵列天线(PAAS)的带宽限制的有前途的候选人。在这里,我们报告了基于硅启用器平台上的可切换OTTDL的第一个单片1x8微波光子光子束形式。该芯片由一个调制器,一个八通道OBFN和8个光电遗传学组成,其中包括数百个主动和被动组件。它的运行带宽从8到18 GHz,几乎比电子PAAS大两个阶。根据测量的RF响应,基于梁模式计算,可以将梁转向-75.51°至75.64°的31个可区分角度。光束转向的响应时间为56μs。这些结果是朝着实现集成的微波光子光束器件迈出的重要一步,这些光子光子界定器可以满足未来雷达和无线通信系统的紧凑型和低功耗要求。
Optical beamforming networks (OBFNs) based on optical true time delay lines (OTTDLs) are well-known as the promising candidate to solve the bandwidth limitation of traditional electronic phased array antennas (PAAs) due to beam squinting. Here we report the first monolithic 1x8 microwave photonic beamformer based on switchable OTTDLs on the silicon-on-insulator platform. The chip consists of a modulator, an eight-channel OBFN, and 8 photodetectors, which includes hundreds of active and passive components in total. It has a wide operating bandwidth from 8 to 18 GHz, which is almost two orders larger than that of electronic PAAs. The beam can be steered to 31 distinguishable angles in the range of -75.51° to 75.64° based on the beam pattern calculation with the measured RF response. The response time for beam steering is 56 μs. These results represent a significant step towards the realization of integrated microwave photonic beamformers that can satisfy compact size and low power consumption requirements for the future radar and wireless communication systems.