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首页> 外文期刊>Journal of Lightwave Technology >Optimizing the bias and modulation voltages of MQW Mach-Zehnder modulators for 10 Gb/s transmission on nondispersion shifted fiber
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Optimizing the bias and modulation voltages of MQW Mach-Zehnder modulators for 10 Gb/s transmission on nondispersion shifted fiber

机译:优化MQW Mach-Zehnder调制器的偏置和调制电压,以在非色散位移光纤上传输10 Gb / s

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摘要

The chirp and optical extinction ratio of a multiple quantum-well (MQW) Mach-Zehnder modulator depend on the device design and on the voltage waveforms applied to the arm electrodes. For 10 Gb/s transmission over nondispersion shifted fiber, joint optimization of the bias and modulation voltages is considered for a conventional modulator and a /spl pi/-phase-shift modulator. Measured attenuation and phase constants for an optical signal propagating in the modulator waveguide are used to accurately model the Mach-Zehnder modulators. The influence of asymmetric Y-branch waveguides in the modulators is examined taking into consideration group velocity dispersion and self-phase modulation arising from the Kerr nonlinearity. When the modulators are operated with maximum optical extinction ratio, the dispersion limited transmission distance depends on the device design (phase-shift and Y-branch splitting ratio) and modulation format (dual drive or single drive). Optimization of the bias and modulation voltages reduces this dependence significantly, while also increasing the dispersion limited transmission distance.
机译:多量子阱(MQW)Mach-Zehnder调制器的线性调频和消光比取决于器件设计和施加于臂电极的电压波形。对于在非色散位移光纤上的10 Gb / s传输,考虑对常规调制器和/ spl pi /相移调制器进行偏置和调制电压的联合优化。在调制器波导中传播的光信号的测得衰减和相位常数可用于对Mach-Zehnder调制器进行精确建模。考虑了由Kerr非线性引起的群速度色散和自相位调制,研究了调制器中非对称Y分支波导的影响。当调制器以最大消光比工作时,色散受限的传输距离取决于设备设计(相移和Y分支分裂比)和调制格式(双驱动或单驱动)。偏置电压和调制电压的优化大大降低了这种依赖性,同时还增加了色散限制的传输距离。

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