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Design of eight-mode polarization-maintaining few-mode fiber for multiple-input multiple-output-free spatial division multiplexing

机译:多输入多输出无空分复用的八模保偏少模光纤设计

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We propose a polarization-maintaining few-mode fiber (FMF) that features an elliptical ring shaped core with a high refractive index contrast similar to 0.03 between the core and the cladding. This fiber design alleviates the usual trade-off between the number of guided modes and the achievable birefringence that is usually observed in conventional elliptical-core FMFs. Through numerical simulations, we show that this fiber design can support up to 10 guided vector modes over the entire C band while providing large birefringence. Except for the two fundamental modes, the eight higher-order vector modes are all separated from their adjacent modes by effective index differences > 10(-4), which is the typical birefringence value of single-mode polarization maintaining fibers. The designed fiber targets applications in spatial division multiplexing of optical channels, without multiple-input-multiple-output (MIMO) digital signal processing, for short-reach optical interconnects. (C) 2015 Optical Society of America
机译:我们提出了一种保偏的少模光纤(FMF),该光纤具有椭圆形环形纤芯,具有高折射率对比度,类似于纤芯和包层之间的0.03。这种光纤设计减轻了通常在常规椭圆芯FMF中观察到的导模数与可达到的双折射之间的通常权衡。通过数值模拟,我们表明这种光纤设计可以在整个C波段上支持多达10个引导矢量模式,同时提供大的双折射。除两个基本模式外,八个高阶矢量模式都通过有效折射率差> 10(-4)与相邻模式分开,有效折射率差为单模保偏光纤的典型双折射值。设计的光纤针对短距离光学互连而无需多输入多输出(MIMO)数字信号处理的光通道空分复用应用。 (C)2015年美国眼镜学会

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