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首页> 外文期刊>Journal of Lightwave Technology >Analysis of Fundamental-Mode Beam Transport in Highly Multimode Fibers
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Analysis of Fundamental-Mode Beam Transport in Highly Multimode Fibers

机译:高度多模光纤中的基本模光束传输分析

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In view of the growing demand for fiber beam delivery in manufacturing systems with close to diffraction-limited beam quality, we present an analysis of the propagation of a nearly diffraction-limited laser beam through 5 to 10 m long multimode step-index fibers with a numerical aperture of 0.111 and core diameters of up to 80 μm. The influence of the launching conditions are investigated theoretically and experimentally by varying the beam size of the input beam. At a core diameter as high as 80 μm, corresponding to a mode field area of 2800 μ m2, and an optimum launching condition, the transmitted M2 was measured to be around 1.3. It is shown that bending of the fibers down to radii as small as 2 cm barely influences the beam quality factor of the transmitted beam for all the tested fibers as the M2 was always found to be smaller than 1.5. The threshold of stimulated Raman scattering was measured to be around 60 kW for a fiber loosely placed on the table (rbend ≥ 25 cm) with a total length of 10 m and a core diameter of 80 μ m.
机译:鉴于在接近衍射极限光束质量的制造系统中对光纤束传输的需求不断增长,我们对近衍射极限激光束通过5至10 m长的多模阶跃折射率光纤的传播进行了分析。 0.111的数值孔径和最大80μm的芯直径。通过改变输入光束的光束大小,从理论上和实验上研究了发射条件的影响。在核心直径高达80μm(对应于2800μm2的模场区域)和最佳发射条件的情况下,测得的透射M2约为1.3。结果表明,将光纤弯曲至半径小至2 cm几乎不会影响所有测试光纤的透射光束的光束质量因数,因为总是发现M2小于1.5。对于松散放置在桌子上(弯曲度≥25 cm),总长度为10 m,纤芯直径为80μm的光纤,经测量的受激拉曼散射阈值约为60 kW。

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