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Radiation effects on rare-earth doped optical fibers

机译:掺稀土光纤的辐射效应

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In this paper, we reviewed our previous work concerning the responses of rare-earth (RE) doped fibers (Yb, Er and Er/Yb) to various types of radiations like y-rays, X-rays and protons. For all these harsh environments, the main measured macroscopic radiation-induced effect is an increase of the linear attenuation of these waveguides due to the generation of point defects in the RE-doped core and silica-based cladding. To evaluate the vulnerability of this class of optical fibers for space missions, we characterize the growth and decay kinetics of their radiation-induced attenuation (RIA) during and after irradiation for various compositions. Laboratory testing reveals that this class of optical fibers is very sensitive to radiations compared to passive (RE-free) samples. As a consequence, despite the small length used for space applications, the understanding of the radiation-induced effects in this class of optical fibers becomes necessary before their integration as part of fiber-based systems like gyroscopes or communication systems. In this paper, we more particularly discussed about the relative influence of the rare-earth ions (Er~(3+) and/or Yb~(3+)) and of the glass matrix dopants (Al, P, ...) on the optical degradation due to radiations. This has been done by using a set of five prototype optical fibers designed by the fiber manufacturer iXFiber SAS to enlighten the role of these parameters. Additional spectroscopic tools like confocal microscopy of luminescence are also used to detect possible changes in the spectroscopy of the rare-earth ions and their consequences on the functionality of the active optical fibers.
机译:在本文中,我们回顾了我们以前的工作,涉及稀土(RE)掺杂的纤维(Yb,Er和Er / Yb)对各种类型的辐射(如y射线,X射线和质子)的响应。对于所有这些苛刻的环境,主要测量的宏观辐射诱导效应是由于在RE掺杂的纤芯和二氧化硅基包层中产生点缺陷,导致这些波导的线性衰减增加。为了评估此类光纤在太空飞行中的脆弱性,我们对各种成分的辐照期间和辐照后其辐射诱导衰减(RIA)的生长和衰减动力学进行了表征。实验室测试表明,与无源(不含RE)样品相比,这类光纤对辐射非常敏感。因此,尽管用于空间应用的长度很小,但是在将它们集成为陀螺仪或通信系统等基于光纤的系统的一部分之前,有必要了解此类光纤中的辐射诱发效应。在本文中,我们将更具体地讨论稀土离子(Er〜(3+)和/或Yb〜(3+))与玻璃基质掺杂剂(Al,P,...)的相对影响会因辐射而导致光学性能下降。这是通过使用光纤制造商iXFiber SAS设计的一组五根原型光纤来完成的,以启发这些参数的作用。诸如共聚焦发光显微镜的其他光谱工具也可用于检测稀土离子光谱的可能变化及其对活性光纤功能的影响。

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