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Dispersion and birefringence of irregularly microstructured fiber with an elliptic core

机译:椭圆形纤芯不规则微结构光纤的色散和双折射

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摘要

We have investigated the dispersion and birefringence of an irregularly microstructured fiber with an elliptic silica core and irregular airholes. The polarization-dependent output power through the fiber reveals two well-defined principal-axis modes despite the irregularity of airholes. The dispersion of the fiber is measured in the range of 680 to 1000 nm using the Mach-Zehnder interferometric technique with sub-10 fs laser pulses, which yield two zero dispersion wavelengths at 683 and 740 nm for the two principal modes, respectively. The birefringence measured using the wavelength scanning method is about 0.0055 at 800 nm. It is also demonstrated that this irregularly microstructured fiber with high birefringence and short zero dispersion wavelength is useful for the one-octave-spanning supercontinuum generation suitable for an f-2f interferometric system.
机译:我们研究了具有椭圆二氧化硅芯和不规则气孔的不规则微结构纤维的色散和双折射。尽管气孔不规则,但通过光纤的与偏振有关的输出功率显示出两种定义明确的主轴模式。使用Mach-Zehnder干涉技术和低于10 fs的激光脉冲,可在680至1000 nm的范围内测量光纤的色散,对于两种主要模式,该色散分别在683和740 nm处产生两个零色散波长。使用波长扫描方法测得的双折射在800 nm处约为0.0055。还证明了这种具有高双折射和短零色散波长的不规则微结构化光纤对于适用于f-2f干涉系统的跨度为一倍频程的超连续谱是有用的。

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