首页> 外文会议>Nanophotonics and Macrophototonics for Space Environments; Proceedings of SPIE-The International Society for Optical Engineering; vol.6713 >Investigation of Radiation-Induced Photodarkening in Passive Erbium-, Ytterbium-, and Yb/Er Co-Doped Optical Fibers
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Investigation of Radiation-Induced Photodarkening in Passive Erbium-, Ytterbium-, and Yb/Er Co-Doped Optical Fibers

机译:掺Er,掺,和掺b /掺b光纤中辐射诱导的光暗化研究

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The deployment of optical fibers in adverse radiation environments, such as those encountered in a low-Earth-orbit space setting, makes critical the development of an understanding of the effect of large accumulated ionizing-radiation doses on optical components and systems. In particular, gamma radiation is known to considerably affect the performance of optical components by inducing absorbing centers in the materials. Such radiation is present both as primary background radiation and as secondary radiation induced by proton collisions with space-craft material. This paper examines the effects of gamma radiation on erbium-, ytterbium-, and Yb/Er co-doped optical fibers by exposing a suite of such fibers to radiation from a Co-60 source over long periods of time while monitoring the temporal and spectral decrease in transmittance of a reference signal. For same total doses, results show increased photodarkening in erbium-doped fibers relative to ytterbium-doped fibers, as well as significant radiation resistance of the co-doped fibers over wavelengths of 1.0 -1.6 microns. All three types of fibers were seen to exhibit dose-rate dependences.
机译:光纤在不利辐射环境(例如在低地球轨道空间环境中遇到的辐射环境)中的部署,对于理解大累积电离辐射剂量对光学组件和系统的影响的认识的发展至关重要。特别地,已知γ射线通过在材料中引起吸收中心而极大地影响光学部件的性能。这样的辐射既是主要的本底辐射,又是由于与航天器材料发生质子碰撞而引起的次要辐射。本文研究了γ射线对、,和Yb / Er共掺杂光纤的影响,方法是将这类光纤套件长时间暴露于来自Co-60光源的辐射,同时监控时间和光谱降低参考信号的透射率。对于相同的总剂量,结果表明,相对于掺fibers光纤,掺fibers光纤的光暗化增强,并且在1.0 -1.6微米的波长范围内,共掺光纤的抗辐射性显着。观察到所有三种类型的纤维均表现出剂量率依赖性。

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