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Demonstration of fundamental mode only propagation in highly multimode fibre for high power EDFAs

机译:演示仅基本模式在高功率多模光纤中在高度多模光纤中的传播

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摘要

The use of short lengths of large core phosphate glass fibre, doped with high concentrations of Er or Er:Yb represents an attractive route to achieving high power erbium doped fibre amplifiers (EDFAs) and lasers (EDFLs). With the aim of investigating the potential of achieving diffraction limited output from such large core fibres, we present experimental results of fundamental mode propagation through a 20 cm length of passive 300 micrometer core multimode fibre when the input is a well-aligned Gaussian beam. Through careful control of fibre geometry, input beam parameters and alignment, we measured an output M squared of 1.1 + - 0.05. The fibre had a numerical aperture of 0.389, implying a V number of 236.8. To our knowledge, this is the largest core fibre through which diffraction limited fundamental mode propagation has been demonstrated. Although the results presented here relate to undoped fibre, they do provide the practical basis for a new generation of EDFAs and EDFLs.
机译:短长度的大芯磷酸盐玻璃纤维掺杂高浓度的Er或Er:Yb的使用,是实现高功率掺do光纤放大器(EDFA)和激光器(EDFL)的诱人途径。为了研究从这样的大型纤芯光纤获得衍射受限输出的潜力,我们给出了当输入为对准良好的高斯光束时,通过20 cm长的无源300微米纤芯多模光纤传播基本模式的实验结果。通过仔细控制光纤的几何形状,输入光束参数和对准,我们测得的输出M平方为1.1 +-0.05。光纤的数值孔径为0.389,意味着V值为236.8。据我们所知,这是最大的芯光纤,通过它可以证明衍射限制的基模传播。尽管此处给出的结果与未掺杂的光纤有关,但它们确实为新一代EDFA和EDFL提供了实用的基础。

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