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Correspondence Between Effective Mode Area and Dispersion Variations in Defected Core Photonic Crystal Fibers

机译:偏转芯光子晶体光纤中有效模式面积与色散变化之间的对应关系

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摘要

In the present paper, the impact of defect insertion in the core area of a large core HF7 fiber on the effective mode area and chromatic dispersion characteristics is investigated to enhance the performance parameters of photonic crystal fibers (PCF). The obtained results meet the requirements of the wideband high-speed optical transmission systems. A novel method for increasing the effective mode area of PCFs without increasing the hole pitch is presented that is based on the mode field distribution modification by defect insertion. Furthermore, it is shown that the dispersion curve is predictable from the effective mode area variations in response to changing the defect parameters. Based on the aforementioned characteristics, the first fully systematic procedure to design a large mode area, dispersion flattened, low-loss and single-mode PCF is presented and employed to design a defected core fiber with chromatic dispersion of 2.9 ± 0.5 ps/(km·nm) in the S + C + L communication band with effective mode area larger than 80 μm2 in the same wavelength range with excellent loss and single-modeness properties.
机译:为了改善光子晶体光纤(PCF)的性能参数,研究了缺陷插入到大芯HF7光纤的芯区域对有效模式面积和色散特性的影响。获得的结果满足宽带高速光传输系统的要求。提出了一种新的方法,该方法在不增加孔间距的情况下增加PCF的有效模式面积,该方法基于通过缺陷插入进行的模式场分布修正。此外,示出了响应于改变缺陷参数,可以从有效模式区域变化来预测色散曲线。根据上述特性,提出了设计大模面积,色散平坦,低损耗和单模PCF的第一个完全系统的程序,并用于设计色散为2.9±0.5 ps /(km)的有缺陷芯光纤·nm)在相同波长范围内有效模式面积大于80μm 2 的S + C + L通信频带中,具有出色的损耗和单模特性。

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