Jiang Xingyi, Zhang Qiang, Fang Shengyu, Li Yan, Zhang Shuyue, Huang Qikai, Yu Hui
Opt Lett. 2024 Jun 15;49(12):3492-3495. doi: 10.1364/OL.522220.
In this paper, a compact silicon-based photonic microwave frequency downconverter with broadband operation capability and continuous phase shift tunability is proposed and experimentally demonstrated. The photonic converter mainly comprises two micro-ring modulators (MRMs) connected in parallel and a cascaded resonator-based optical bandpass filter (OBPF) whose size is merely 200 × 700 µm. In the proposed device, a radio frequency (RF) signal and a local oscillator (LO) signal drive the two MRMs for realizing the electro-optic conversion. The OBPF is utilized for selecting the first-order sidebands of both RF and LO signals. By manipulating the phase difference between the RF and LO optical sidebands through thermal-optic effect, the phase of the obtained intermediate frequency (IF) signal from a photodiode can be tuned continuously. Experimental results demonstrate a 137° phase shift while the RF signals of 20 and 40 GHz are downconverted to an IF signal of 0.4 GHz, which indicates the photonic microwave downconverter can be used in the Ka-band phased-array receiver.
本文提出并通过实验证明了一种具有宽带操作能力和连续相移可调性的紧凑型硅基光子微波频率下变频器。该光子变频器主要由两个并联连接的微环调制器(MRM)和一个尺寸仅为200×700μm的基于级联谐振器的光学带通滤波器(OBPF)组成。在所提出的器件中,射频(RF)信号和本地振荡器(LO)信号驱动两个MRM以实现电光转换。OBPF用于选择RF和LO信号的一阶边带。通过热光效应控制RF和LO光边带之间的相位差,可以连续调谐从光电二极管获得的中频(IF)信号的相位。实验结果表明,当20和40GHz的RF信号下变频为0.4GHz的IF信号时,相移为137°,这表明该光子微波下变频器可用于Ka波段相控阵接收机。