采用数字间电容小型化微波分支耦合器的LiNbO3光SSB调制器

Katsuyuki Yamamoto, T. Kawai, A. Enokihara, T. Kawanishi
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摘要

利用Mach-Zehnder (MZ)干涉仪和分支线耦合器(BC)电路作为90度混合电路,可以实现光单边带(SSB)调制。本文在光电晶体LiNbO3衬底上设计了一种带有数字间结构串联电容的小型化BC电路。与传统BC相比,小型化BC的面积减少了约60%,并且在10 GHz左右的频率下可以作为90度混合动力运行。设计了一种结构紧凑的单输入型光SSB调制器,将BC电路与调制电极直接连接到EO调制器基板上。在实验中,制作了调制器,利用1550 nm区域的光波观测到边带抑制比大于30 dB的光SSB信号。
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LiNbO3 optical SSB modulator using microwave branchline coupler miniaturized by inter-digital capacitors
Optical single sideband (SSB) modulation can be realized by using a Mach-Zehnder (MZ) interferometer with the branch-line coupler (BC) circuit as a 90 degree hybrid. In this paper, a miniaturized configuration of the BC circuit with installed series capacitors of the inter-digital structure was designed onto an electro-optic (EO) crystal, LiNbO3, substrate. Compared with a conventional BC, an area of the miniaturized BC was reduced by about 60% and the operation as the 90 degree hybrid was confirmed at around 10 GHz. The BC circuit directly connected with modulation electrodes was designated onto an EO modulator substrate for a single input type optical SSB modulator with a compact configuration. In the experiment, the modulator was fabricated and the optical SSB signal with the sideband suppression ratio of more than 30 dB was observed using light-waves of the 1550 nm region.
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