Optical fibers fabricated from 3D printed silica preforms

Optical fibers fabricated from 3D printed silica preforms
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由 3D 打印二氧化硅预制件制成的光纤

DOI:
10.1117/12.2543210
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发表时间:
2020
期刊:
--
影响因子:
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通讯作者:
Camacho Rosales A
Camacho Rosales A
中科院分区:
--
文献类型:
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作者:
Camacho Rosales A

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对新型光纤设计的日益增长的需求给当前的制造方法带来了重大挑战。增材制造是一种创新的制造工艺,一直吸引着光纤界的关注。基于选择性激光烧结(SLS),从商业二氧化硅粉末生产3D打印多孔体。利用该方法制备了反谐振光纤(ARF)、光子晶体光纤(PCF)和多芯光纤(MCF)等复杂结构的光纤预制棒。此外,用3D打印的预制件制造了具有二氧化硅包层和GeO 2-SiO2芯的多材料光纤。报道了所制造的3D打印结构的光学和物理性质。
The increasing demand for novel fiber design has brought major challenges with the current fabrication methods. Additive manufacturing is an innovative fabrication process that has been attracting attention to the optical fiber community. 3D printed porous bodies from commercial silica powder were produced based on selective laser sintering (SLS). Complex structures such as antiresonant fiber (ARF), photonic crystal fiber (PCF) and multicore fiber (MCF) preforms were produced by this method. Additionally, a multi-material fiber with a silica cladding and a GeO2-SiO2core was fabricated from a 3D printed preform. The optical and physical properties of the fabricated 3D printed structures were reported.
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