soa中非线性脉冲传播与混波特性分析

Baji Babu Palagarla, N. Das, M. Razaghi
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引用次数: 1

摘要

本文主要研究了半导体光放大器中的非线性脉冲传播和四波混频特性。为了进行仿真,采用修正非线性Schrödinger方程(MNLSE)对SOA中的脉冲传播进行建模。在这个模型中,我们包含了增益动力学和soa的所有非线性效应进行仿真。采用有限差分波束传播方法求解非线性最小最小熵,得到了SOA中的非线性脉冲传播和FWM特性。非线性脉冲传播特性表明,输出半峰全宽随输入峰宽的增大而线性增加。输出脉冲能量也随着输入脉冲能量的增加而增加。由于增益饱和和自相位调制(SPM)的影响,输出频谱出现了一些下降。当失谐<1 THz时,混FWM转换效率较好。最后,混FWM信号能量高度依赖于输入泵浦和探头能量。随着SOA长度的增加,FWM信号峰值功率呈指数增长。本文的仿真结果适用于高速通信系统和传感器网络系统中soa的设计。
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Analysis of nonlinear pulse propagation and wave-mixing characteristics in SOAs
This paper mainly focuses on nonlinear pulse propagation and four-wave mixing (FWM) characteristics in semiconductor optical amplifiers (SOAs). For simulation, modified nonlinear Schrödinger equation (MNLSE) is used for the modelling of pulse propagation in SOA. In this model, we have included the gain dynamics and all nonlinear effects of the SOAs for simulation. Finite-difference beam propagation method is adopted to solve the MNLSE, obtained nonlinear pulse propagation and FWM characteristics in SOA. The nonlinear pulse propagation characteristics show that the output full width at half maximum (FWHM) is linearly increases with increase of input FWHM. Output pulse energy also increases with the increase of input pulse energy. There are some dips occur at the output spectrum which is due to the gain saturation and self-phase modulation (SPM) effects. The FWM conversion efficiency is good if the detuning is <1 THz Finally, the FWM signal energy highly dependent on the input pump and probe energies. The FWM signal peak power increases exponentially with the increase of SOA length. Our simulation results are suitable for the design of SOAs those are using in high-speed communication systems and sensor network systems.
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