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Preparation and Characterization of Bragg Fibers for Delivery of Laser Radiation at 1064 nm

机译:用于传输1064 nm激光辐射的布拉格光纤的制备和表征

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摘要

Bragg fibers offer new performance for transmission of high laser energies over long distances. In this paper theoretical modeling, preparation and characterization of Bragg fibers for delivery laser radiation at 1064 nm are presented. Investigated Bragg fibers consist of the fiber core with a refractive index equal to that of silica which is surrounded by three pairs of circular layers. Each pair is composed of one layer with a high and one layer with a low refractive index and characterized by a refractive-index difference around 0.03. Propagation constants and radiation losses of the fundamental mode in such a structure were calculated on the basis of waveguide optics. Preforms of the Bragg fibers were prepared by the MCVD method using germanium dioxide, phosphorous pentoxide and fluorine as silica dopants. The fibers with a diameter of 170 m were drawn from the preforms. Refractive-index profiles, angular distributions of the output power and optical losses of the prepared fibers were measured. Results of testing the fibers for delivery radiation of a pulse Nd:YAG laser at 1064 nm are also shown.
机译:布拉格光纤为长距离传输高能量的激光提供了新的性能。在本文中,提出了用于传输1064 nm激光辐射的布拉格光纤的理论模型,制备和表征。所研究的布拉格纤维由折射率等于二氧化硅的纤芯组成,纤芯被三对圆形层包围。每对由折射率高的一层和折射率低的一层组成,其特征在于折射率差约为0.03。在这种结构中,基于波导光学,计算出基本模式的传播常数和辐射损耗。通过MCVD方法使用二氧化锗,五氧化二磷和氟作为二氧化硅掺杂剂来制备布拉格纤维的预成型体。从预制棒中拉出直径为170微米的纤维。测量所制备的纤维的折射率分布,输出功率的角度分布和光损耗。还显示了测试光纤在1064 nm下发射Nd:YAG脉冲激光的辐射结果。

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