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Large-effective-area dispersion-compensating fiber design based on dual-core microstructure

机译:基于双芯微结构的大面积有效色散补偿光纤设计

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We present a microstructure-based dual-core dispersion-compensating fiber (DCF) design for dispersion compensation in long-haul optical communication links. The design has been conceptualized by combining the all-solid dual-core DCF and dispersion-compensating photonic crystal fiber. The fiber design has been analyzed numerically by using a full vectorial finite difference time domain method. We propose a fiber design for narrowband as well as broadband dispersion compensation. In the narrowband DCF design, the fiber exhibits very large negative dispersion of around -42,000 ps nm~(-1) km~(-1) and a large mode area of 67 μm~2. The effects of varying different structural parameters on the dispersion characteristics as well as on the trade-off between full width at half-maximum and dispersion have been investigated. For broadband DCF design, a dispersion value between -860 ps nm~(-1) km~(-1) and -200 ps nm~(-1) km~(-1) is obtained for the entire spectral range of the C band.
机译:我们提出了一种基于微结构的双芯色散补偿光纤(DCF)设计,用于长距离光通信链路中的色散补偿。通过将全固态双芯DCF和色散补偿光子晶体光纤相结合,可以对设计进行概念化。通过使用全矢量有限差分时域方法对光纤设计进行了数值分析。我们提出了一种针对窄带以及宽带色散补偿的光纤设计。在窄带DCF设计中,光纤表现出非常大的负色散,约为-42,000 ps nm〜(-1)km〜(-1),且模式面积较大,为67μm〜2。研究了改变不同结构参数对色散特性以及半最大全宽和色散之间权衡的影响。对于宽带DCF设计,对于C的整个光谱范围,获得的色散值在-860 ps nm〜(-1)kmm(-1)和-200 ps nm〜(-1)kmm(-1)之间。带。

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