Burla Maurizio, Roeloffzen Chris G H, Zhuang Leimeng, Marpaung David, Khan Muhammad Rezaul, Maat Peter, Dijkstra Klaas, Leinse Arne, Hoekman Marcel, Heideman René
Telecommunication Engineering Group, CTIT Research Institute, University of Twente, P.O. Box 217, 7500 AE, Enschede, The Netherlands.
Appl Opt. 2012 Mar 1;51(7):789-802. doi: 10.1364/AO.51.000789.
In this paper we describe the system integration and the experimental demonstration of a photonically beamformed four-element receiving array antenna for radio astronomy applications. To our knowledge, the work described here is the first demonstration of the squint-free, continuously tunable beamsteering capability offered by an integrated photonic beamformer based on optical ring resonator true-time-delay units, with measured radiation patterns. The integrated beamformer is realized in a low loss, complementary metal-oxide-semiconductor (CMOS) compatible optical waveguide technology. The measurements show a wideband, continuous beamsteering operation over a steering angle of 23.5 degrees and an instantaneous bandwidth of 500 MHz limited only by the measurement setup.
在本文中,我们描述了一种用于射电天文学应用的光子波束形成四元接收阵列天线的系统集成和实验演示。据我们所知,本文所述工作首次展示了基于光环谐振器实时延迟单元的集成光子波束形成器所具备的无斜视、连续可调波束转向能力,并给出了测量的辐射方向图。该集成波束形成器采用低损耗、互补金属氧化物半导体(CMOS)兼容光波导技术实现。测量结果表明,在仅受测量装置限制的23.5度转向角和500 MHz瞬时带宽范围内,实现了宽带、连续的波束转向操作。