Opt Lett. 2018 Jul 1;43(13):3049-3052. doi: 10.1364/OL.43.003049.
The radiation responses of different high-power erbium/ytterbium-codoped fiber amplifiers (HP-EYDFA) have been investigated up to 100 krad (SiO) dose levels. These devices are able to deliver 20 W of signal output power at 1565 nm by pumping at 915 nm (43 W) radiation tolerant (Er/Yb) or radiation hardened (ErYbCe) active few mode fibers; these performances are needed for free-space communications between low-orbit satellites and ground transceivers. X-ray irradiation results show that, thanks to a positive influence of the photo- and thermal-bleaching phenomena associated with such high-power operating conditions, the gain degradation levels of HP-EYDFA based on radiation hardened fibers remain below 6% after 100 krad at an accelerated dose rate of 3.4 rad/s.
已研究了不同高功率掺铒/掺镱光纤放大器(HP-EYDFA)在高达 100krad(SiO)剂量水平下的辐射响应。这些器件能够在 915nm(43W)泵浦下通过辐射耐受(Er/Yb)或辐射硬化(ErYbCe)有源少模光纤提供 1565nm 处 20W 的信号输出功率;这些性能是低轨道卫星和地面收发器之间自由空间通信所必需的。X 射线辐照结果表明,由于与这种高功率工作条件相关的光漂白和热漂白现象的积极影响,基于辐射硬化光纤的 HP-EYDFA 的增益退化水平在以 3.4rad/s 的加速剂量率辐照 100krad 后仍保持在 6%以下。