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Modulation Depth Based on Frequency-shift Characteristic of LiNbO3 Waveguide Electro-optic Intensity Modulator

Modulation Depth Based on Frequency-shift Characteristic of LiNbO3 Waveguide Electro-optic Intensity Modulator
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摘要 The modulation depth, defined according to practical modulation results, which changes with the microwave power and its frequency, is significant for systems utilizing the frequency-shift characteristic of the LiNbO3 waveguide Electro-Optic Intensity Modulator (EOIM). By analyzing the impedance mismatch between the microwave source and the EOIM, the effective voltage applied to the RF port of the EOIM is deprived from the microwave power and its frequency. Associating with analyses of the phase velocity mismatch between the microwave and the optical wave, the theoretical modulation depth has been obtained, which is verified by experimental results. We provide a method to choose the appropriate modulation depth to optimize the desired sideband through proper transmission bias for the system based on the frequency-shift characteristic of the EOIM.
出处 《Journal of Measurement Science and Instrumentation》 CAS 2010年第2期125-128,共4页 测试科学与仪器(英文版)
基金 supported by Program for New Century Excellent Talents in University(No.NCET-06-0925)
关键词 waveguide electro-optic intensity modulator modulation depth frequency shift distributedBriiouin optical fiber sensing 光强度调制器 调制深度 铌酸锂 频率 导电 微波功率 特征系统 阻抗不匹配
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参考文献13

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