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Vapor phase doping process for fabrication of rare earth doped optical fibers: Current status and future opportunities

机译:气相掺杂工艺制造稀土掺杂光纤的现状和未来机遇

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摘要

Emerging application of rare-earth (RE) doped optical fibers in high power lasers requires preforms with stringent geometrical and optical properties. This in turn demands more versatile and reliable process technology which brought Vapor Phase Doping (VPD) into prominence. This technology has immense potential to overcome fiber fabrication related challenges viz. dopant-rich phase separation. RE uniformity in radial as well as longitudinal direction, "star-like" defect elimination from core-clad boundary and refractive index (RI) adjustment which results in improved beam quality and power stability of fiber laser. Further, high power lasers demand LMA active fibers with large core diameter and low numerical aperture (NA) which is easily producible by VPD method as it permits deposition of multiple RE doped core layers in a reproducible "in situ" manner. So. the prime focus is to optimize process technology to produce low RI, large core fibers. This article gives an overview of the comprehensive effort made by the global researchers to overcome challenges of VPD method and to demonstrate a standardized process technology for RE doping in silica glass preform.
机译:掺稀土(RE)的光纤在高功率激光器中的新兴应用要求瓶坯具有严格的几何和光学特性。反过来,这需要更通用,更可靠的工艺技术,从而使气相掺杂(VPD)成为重要问题。该技术具有克服纤维制造相关挑战的巨大潜力。富掺杂剂相分离。径向和纵向的RE均匀性,包芯边界和折射率(RI)的调整消除了“星状”缺陷,从而提高了光纤激光器的光束质量和功率稳定性。此外,高功率激光器需要具有大纤芯直径和低数值孔径(NA)的LMA活性纤维,其易于通过VPD方法生产,因为它允许以可重现的“原位”方式沉积多个掺杂RE的纤芯层。所以。主要重点是优化工艺技术以生产低RI,大芯纤维。本文概述了全球研究人员为克服VPD方法的挑战而做出的综合努力,并展示了用于石英玻璃预成型坯中RE掺杂的标准化工艺技术。

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