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Improved silica-core fibers in the UV-transmission

机译:改善石英芯纤维在紫外线下的透射

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Optical fibers for UV transmission have been under intensive development for medical, industrial and other applications during the past several years. Because of this high-speed growth, the problems associated with the damage and transmission properties of silica fibers in the UV region need to be deeply solved. In this paper, in order to make silica-core fibers with excellent transmission in a UV spectral region, an improved silica-core fiber is fabricated by a new fabrication technology of UV-transmission fibers. The technology of fabricating a UV fiber using silica glass is based on two effects of previous UV irradiation and heat treatment. The structural defects and color centers are purposefully caused in silica glass by irradiation silica glass preform with UV, then the structural defects and color centers are removed by performing heat treatment in drawing tower during drawing optical fiber process. The defect generation mechanism in the silica optical fibers is investigated in the paper, and these defects termination principle is also developed. Finally, UV fibers have been tested. From these tested results, UV fibers fabricated by proposed technology have reached the level of high characteristics.
机译:在过去的几年中,用于紫外线传输的光纤已经在医疗,工业和其他应用中得到了大力开发。由于这种高速生长,与硅纤维在紫外线区域的损坏和透射特性有关的问题需要得到深层解决。在本文中,为了使二氧化硅芯纤维在紫外光谱区域具有优异的透射率,通过一种新型的紫外线透射纤维制造技术制造出一种改良的二氧化硅芯纤维。使用石英玻璃制造紫外线纤维的技术是基于先前紫外线照射和热处理的两种作用。通过用紫外线照射石英玻璃预成型件,有意在石英玻璃中引起结构缺陷和色心,然后在拉伸光纤过程中通过在拉伸塔中进行热处理除去结构缺陷和色心。本文研究了石英光纤中的缺陷产生机理,并提出了这些缺陷终止原理。最后,已经测试了紫外线纤维。从这些测试结果来看,通过提出的技术制造的紫外线纤维已经达到了高特性水平。

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