Chen Wenjuan, Zhu Dan, Xie Chenxu, Liu Jiang, Pan Shilong
Opt Lett. 2019 Aug 15;44(16):4052-4055. doi: 10.1364/OL.44.004052.
A microwave channelizer based on a photonic dual-output image-reject mixer (IRM) is proposed and demonstrated. By introducing the dual-output IRM based on the balanced Hartley structure, 2N channels can be produced by using the optical frequency combs (OFCs) with N comb lines. The required electrical hybrids and the optical filters are also reduced by half. In addition, the channelization efficiency is doubled, and the in-band interferences, including the image and the nonlinear mixing spurs, are greatly suppressed. A proof-of-concept experiment is performed. By applying a pair of OFCs with three comb lines, an RF signal with a 6 GHz instantaneous bandwidth is successfully divided into six channels with 1 GHz bandwidth. The in-band interference is suppressed by more than 25 dB for all channels.
提出并演示了一种基于光子双输出镜像抑制混频器(IRM)的微波信道化器。通过引入基于平衡哈特利结构的双输出IRM,利用具有N条梳状线的光学频率梳(OFC)可以产生2N个信道。所需的电混合器和光学滤波器数量也减少了一半。此外,信道化效率提高了一倍,包括镜像和非线性混频杂散在内的带内干扰得到了极大抑制。进行了概念验证实验。通过应用一对具有三条梳状线的OFC,一个具有6 GHz瞬时带宽的射频信号成功地被分成了六个带宽为1 GHz的信道。所有信道的带内干扰抑制超过25 dB。