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首页> 外文期刊>International Journal of Optoelectronic Engineering >Interferometric Estimation of Nonlinearity in GRIN Optical Fiber
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Interferometric Estimation of Nonlinearity in GRIN Optical Fiber

机译:GRIN光纤中非线性的干涉估计

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摘要

In many industrial applications, coupling high power laser beam into multi-mode graded-index fiber (GRIN) is an important issue especially when deeper penetration and speed cutting/welding processes are required. With increasing the laser power, nonlinear effects such as self-focusing takes place leading to a catastrophic damage for optical fibers. Construction of robust high power fiber-laser systems still need to analyze the different parameters that affect the nonlinear response of the fiber material and its waveguiding conditions. Due to its high spatial resolving power, interferometry is used to study the efect of waveguide and material dispersion profiles, and the central core-index dip on the Kerr nonlinear index profiles of GRIN fiber.
机译:在许多工业应用中,将高功率激光束耦合到多模渐变折射率光纤(GRIN)中是一个重要的问题,尤其是在需要更深的穿透力和更快的切割/焊接工艺时。随着激光功率的增加,发生诸如自聚焦之类的非线性效应,导致光纤的灾难性损坏。强大的高功率光纤激光系统的构建仍然需要分析影响光纤材料及其波导条件的非线性响应的不同参数。由于其较高的空间分辨能力,因此采用干涉测量法研究波导和材料色散分布图的影响,以及中心纤芯折射率对GRIN光纤的Kerr非线性折射率分布的影响。

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