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Measurement of the group dispersion of the fundamental mode of holey fiber by white-light spectral interferometry

机译:白光光谱干涉法测量带孔光纤基本模的基团色散

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摘要

We present a new method for measuring the group dispersion of the fundamental mode of a holey fiber over a wide wavelength range by white-light interferometry employing a low-resolution spectrometer. The method utilizes an unbalanced Mach-Zehnder interferometer with a fiber under test placed in one arm and the other arm with adjustable path length. A series of spectral signals are recorded to measure the equalization wavelength as a function of the path length, or equivalently the group dispersion. We reveal that some of the spectral signals are due to the fundamental mode supported by the fiber and some are due to light guided by the outer cladding of the fiber. Knowing the group dispersion of the cladding made of pure silica, we measure the wavelength dependence of the group effective index of the fundamental mode of the holey fiber. Furthermore, using a full-vector finite element method, we model the group dispersion and demonstrate good agreement between experiment and theory.
机译:我们提出了一种新的方法,该方法通过使用低分辨率光谱仪的白光干涉法在宽波长范围内测量有孔光纤的基本模的基团色散。该方法利用不平衡的Mach-Zehnder干涉仪,将被测光纤放在一个臂中,另一根臂的路径长度可调。记录一系列光谱信号,以测量均衡波长与路径长度或等效的组色散的关系。我们发现,某些光谱信号是由于光纤支持的基本模式而有些则是由于光纤的外部包层引导的光。知道由纯二氧化硅制成的包层的基团色散,我们可以测量多孔光纤基本模式的基团有效折射率的波长依赖性。此外,使用全矢量有限元方法,我们对组色散进行了建模,并证明了实验与理论之间的良好一致性。

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