大信号模型
非线性系统
输电线路
移相模块
频域
等效电路
物理
微波食品加热
绝缘体上的硅
时域
光电子学
信号(编程语言)
电子工程
计算机科学
调制(音乐)
工程类
声学
电压
材料科学
电信
电气工程
硅
量子力学
计算机视觉
程序设计语言
作者
Hadi Bahrami,Hassan Sepehrian,Chul Soo Park,Leslie A. Rusch,Wei Shi
标识
DOI:10.1109/jlt.2016.2551702
摘要
Silicon photonic modulators have strong nonlinear behavior in phase modulation and frequency response, which needs to be carefully addressed when they are used in high-capacity transmission systems.We demonstrate a comprehensive model for depletion-mode Mach-Zehnder modulators (MZMs) on silicon-on-insulator, which provides a bridge between device design and system performance optimization.Our methodology involves physical models of p-n-junction phase-shifters and traveling-wave electrodes, as well as circuit models for the dynamic microwave-light interactions and time-domain analysis.Critical aspects in the transmission line design for high-frequency operation are numerically studied for a case of p-n-junction loaded coplanar-strip electrode.The dynamic interaction between light and microwave is simulated using a distributed circuit model solved by the finite-difference time-domain method, allowing for accurate prediction of both small-signal and large-signal responses.The validity of the model is confirmed by the comparison with experimental results for a series push-pull MZM with a 6 mm phase shifter.The simulation shows excellent agreement with experiment for high-speed operation up to 46 Gbps.We show that this time-domain model can well predict the impact of the nonlinear behavior on the large-signal response, in contrast to the poor prediction from linear models in the frequency domain.
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