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High data rate simulation of phase shifters in silicon-on-insulator

机译:绝缘体上硅移相器的高数据速率仿真

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We report a methodology to study low-loss high-speed traveling-wave silicon Mach-Zehnder modulator with reduced series resistance. The methodology constitutes electrical parameters including, but not limited to, capacitance, conductance and transitioning times to model time response and effective complex refractive index from optical simulations of phase shifter arms and in turn model the phase change and resultant loss induced by each arm. Furthermore, our methodology incorporates microwave impedance and propagation loss under reverse bias characterized by S-parameter measurements. Our high-speed optical performances are simulated and benchmarked against experimental data based on eye-diagram measurements in on-off keying at 10Gbps, showing excellent agreement. This methodology provides best-in-class accuracy and are suitable when operating speeds are scaled to 50Gbps.
机译:我们报告了一种方法,以研究具有降低的串联电阻的低损耗高速行波硅Mach-Zehnder调制器。该方法构成电参数,包括但不限于电容,电导和过渡时间,以通过移相器臂的光学仿真来建模时间响应和有效复数折射率,进而建模每个臂引起的相变和最终损耗。此外,我们的方法结合了以S参数测量为特征的反向偏置下的微波阻抗和传播损耗。我们的高速光学性能是根据实验数据进行仿真并以实验数据为基准的,该数据基于10 Gbps开关键控中的眼图测量,显示出极好的一致性。这种方法可提供一流的准确性,适用于将操作速度扩展到50Gbps的情况。

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