Huang Chongjia, Chan Erwin H W, Albert Chirappanath B
Appl Opt. 2019 Mar 20;58(9):2328-2333. doi: 10.1364/AO.58.002328.
A new cascaded modulator structure that has the ability to realize high conversion efficiency microwave frequency downconversion, while at the same time able to overcome two fundamental limitations in the dual-parallel modulator approach, is presented. It is based on utilizing the polarization-dependent modulation efficiency property in LiNbO electro-optic modulators. The new structure allows the modulators for the RF signal and local oscillator (LO) modulation to be placed in different locations suitable for antenna remoting applications, and it has infinite isolation between the LO and RF signal ports. We present experimental results demonstrating that the proposed structure can be used to realize high conversion efficiency frequency downconversion over wide RF and intermediate frequency (IF) signal frequency ranges as the reported dual-parallel-modulator-based microwave photonic frequency downconverter. Very high isolation of more than 70 dB between the LO and RF signal ports is also demonstrated.
本文提出了一种新型级联调制器结构,该结构能够实现高转换效率的微波频率下变频,同时能够克服双并行调制器方法中的两个基本限制。它基于利用铌酸锂电光调制器中与偏振相关的调制效率特性。这种新结构允许用于射频(RF)信号和本地振荡器(LO)调制的调制器放置在适合天线远程应用的不同位置,并且在LO和RF信号端口之间具有无限隔离。我们给出的实验结果表明,与已报道的基于双并行调制器的微波光子频率下变频器一样,所提出的结构可用于在宽RF和中频(IF)信号频率范围内实现高转换效率的频率下变频。还展示了LO和RF信号端口之间超过70 dB的极高隔离度。