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Improving the Response of a SOA Wavelength Converter in the Counter Propagating Mode Using a Fiber Bragg Grating

机译:使用光纤布拉格光栅改善计数器传播模式中SOA波长转换器的响应

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All-optical wavelength conversion using cross-gain modulation in a semiconductor optical amplifier is one of the simplest and most common techniques to perform such operation. However, the finite gain recovery time of the amplifier causes severe distortion and pattern dependence at high bit-rates. The present work shows that it is possible to reduce the pattern dependence of the output converted signal using a fiber Bragg grating operating on its transmission edge. A wavelength converter using the non-linear effect of cross-gain modulation in a semiconductor optical amplifier can be assembled in the co-propagating and counter-propagating modes. The advantage of the counter-propagating mode is the possibility of an assembly without an optical filter in the output of the converter to filter the input signal, however this scheme introduces crosstalk in WDM systems, due to the residual facets reflectivity of the semiconductor optical amplifier. In this paper we analyze by simulation using commercial software, the improvement in the frequency response of a wavelength converter based on cross gain modulation in semiconductor optical amplifier in the counter-propagating mode using a fiber Bragg grating. The simulation results show that, with the fiber Bragg grating in the output of the converter, the pattern dependence of the converted signal is reduced. This paper also shows the advantages and disadvantages of the counter-propagating mode.
机译:在半导体光放大器中使用交叉增益调制的全光波长转换是执行这种操作的最简单和最常用的技术之一。然而,放大器的有限增益恢复时间导致高比特率的严重失真和模式依赖性。本工作表明,可以使用在其传输边缘上操作的光纤布拉格光栅来降低输出转换信号的图案依赖性。可以在共传播和反传播模式中组装使用半导体光放大器中的交叉增益调制的非线性效果的波长转换器。反传播模式的优点是在转换器的输出中没有滤光器的组件来过滤输入信号,但是由于半导体光放大器的剩余平面反射率,该方案在WDM系统中引入了串扰。 。在本文中,我们通过使用商业软件进行仿真分析,使用光纤布拉格光栅在半导体光放大器中的交叉增益调制中的波长转换器的频率响应的改进。仿真结果表明,在转换器输出的光纤布拉格光栅中,转换信号的图案依赖性降低。本文还示出了反传播模式的优缺点。

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