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首页> 外文期刊>Journal of Lightwave Technology >Irradiation of Radiation-Tolerant Single-Mode Optical Fibers at Cryogenic Temperature
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Irradiation of Radiation-Tolerant Single-Mode Optical Fibers at Cryogenic Temperature

机译:低温下耐辐射的单模光纤的辐照

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摘要

Radiation effects at cryogenic temperature are investigated in two radiation-tolerant Fluorine-doped single-mode fibers originating from two different manufacturers. This paper presents measurements at room temperature (297 K) and at cryogenic temperature (16 K) of the radiation induced attenuation at 1312 nm and 1570 nm for both fibers. In addition to the massive increase of the optical attenuation at 16 K, the fiber is found to be in a frozen state where thermal bleaching and defect recombination no longer occurs. However, a long-term recovery, including the heating of the fiber from cryogenic temperature to room temperature, anneals a large amount of the defects created and brings the fiber back to almost its initial performance.
机译:研究了来自两个不同制造商的两种耐辐射的掺氟单模光纤在低温下的辐射效应。本文介绍了两种光纤在室温(297 K)和低温(16 K)下辐射诱导的1312 nm和1570 nm衰减的测量结果。除了在16 K处的光衰减大量增加外,还发现该光纤处于冻结状态,在该状态下不再发生热漂白和缺陷重组。但是,长期的恢复(包括将纤维从低温加热到室温)会退火产生的大量缺陷,并使纤维几乎恢复到其初始性能。

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