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首页> 外文期刊>Photonics Journal, IEEE >Power Transfer Function Tailoring in a Highly Ge-Doped Nonlinear Interferometer-Based All-Optical Thresholder Using Offset-Spectral Filtering
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Power Transfer Function Tailoring in a Highly Ge-Doped Nonlinear Interferometer-Based All-Optical Thresholder Using Offset-Spectral Filtering

机译:基于偏移谱滤波的高掺锗非线性干涉仪全光阈值器中的功率传递函数定制

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We experimentally investigate and characterize the improvement in thresholding capability of a compact highly Ge-doped nonlinear interferometer-based all-optical thresholder using optical offset spectral filtering. The thresholder we study has an in-loop nonlinearity requirement lower than that of a classical nonlinear loop mirror scheme. Therefore, only 15 m of nonholey silica-based fiber is used as a nonlinear element. Although the nonlinear interferometer-based thresholder has been useful for signal regeneration and thresholding, it has several limitations, including severe pulse distortion due to pulse bifurcation at high input powers and a fixed power transfer function. In this paper, we propose and demonstrate the use of offset spectral filtering at the output of this Ge-doped low nonlinearity interferometer-based thresholder to adjust the power transfer function and thresholding slope, as well as reducing pulse distortion due to pulse bifurcation. To the best of our knowledge, this is the first experimental demonstration of power transfer function tailoring, which makes the thresholder more flexible and allows customization of thresholding parameters in meeting requirements in various systems.
机译:我们实验研究和表征使用光学偏移光谱滤波的紧凑型高Ge掺杂非线性干涉仪基于全光学阈值器的阈值能力的提高。我们研究的阈值器的环路内非线性要求低于经典的非线性环路镜方案。因此,仅15 m的非多孔二氧化硅基纤维被用作非线性元件。尽管基于非线性干涉仪的阈值器可用于信号再生和阈值化,但它具有一些局限性,包括由于高输入功率下的脉冲分叉和固定的功率传递函数而导致的严重脉冲失真。在本文中,我们提出并演示了在基于Ge的低非线性干涉仪阈值器的输出处使用偏移频谱滤波来调节功率传递函数和阈值斜率,以及减少由于脉冲分叉而引起的脉冲失真。据我们所知,这是功率传递函数调整的第一个实验演示,它使阈值器更加灵活,并允许定制阈值参数以满足各种系统的要求。

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