Mach-Zehnder Electro-optic Modulator with Multimode Interference Couplers of LiNbO3 Waveguides for Single Sideband Modulation

Shotaro Yasumori, Anna Hirai, Takanori Sato, K. Morimoto, T. Kawai, A. Enokihara, S. Nakajima, A. Kanno
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Abstract

We designed and evaluated 1×2 and 2×2 optical couplers using multimode interference (MMI) optical waveguides of Ti-diffused LiNbO3. A Mach-Zehnder electrooptic modulator (MZM) designed using those two MMI couplers as an optical power splitter and combiner was fabricated. Optical intensity modulation was achieved with a 50 dB extinction ratio. And the experimental results showed that the 2 ×2 MMI optical coupler could provide nearly equal power division with a 90° phase difference as a 90° hybrid. Next, we applied the MZM structure to the single sideband (SSB) modulation. 10 GHz microwave signals of 90° phase difference were fed to the modulation electrodes on the two arms of the MZM. The SSB modulation operation was confirmed from output light spectra, and the sideband suppression ratio of 39 dB was observed by miner adjustment of the optical phase bias.
具有多模干涉耦合器的LiNbO3波导的Mach-Zehnder电光调制器用于单边带调制
利用ti扩散LiNbO3的多模干涉光波导设计并评价了1×2和2×2光耦合器。利用这两个MMI耦合器作为光功率分配器和合成器,设计了马赫-曾德尔电光调制器(MZM)。光强调制以50 dB的消光比实现。实验结果表明,2 ×2 MMI光耦合器可以在90°相位差的情况下提供几乎相等的功率分配。接下来,我们将MZM结构应用于单边带(SSB)调制。将相位差为90°的10 GHz微波信号馈送到MZM两臂的调制电极上。从输出光谱中确定了SSB调制操作,并通过光相位偏置的矿工调整观察到边带抑制比为39 dB。
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