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Radiation-Resistant Er3+-Doped Superfluorescent Fiber Sources

机译:抗辐射掺Er3 +的超荧光纤维源

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摘要

The radiation effects of three Er3+-doped superfluorescent fiber sources (SFSs), which are based on three segments of Er-doped fibers with different lengths, are studied experimentally. We observed that the radiation-induced attenuation of the signal light of the 1530 nm band for an SFS is less than that of the 1560 nm band. Thus, the trimming technique of the Gauss-like spectra is investigated to reduce the mean wavelength drift. A filter was customized and used in superfluorescent fiber sources. To further reduce output power loss, the method with feedback control of pump power was adopted in the SFS. Then, the trimming spectral SFS with pump feedback control was tested under irradiation environment at the dose rate of 2.988 Gy/h. The experimental results demonstrate that the mean wavelength drift is <40 ppm and the loss of output power is <0.2 dB under a total dose higher than 1000 Gy. These findings confirm the significance of the method in improving radiation-resistant capabilities of fiber sources under irradiation environments.
机译:实验研究了三种掺Er 3 + 超荧光纤维源(SFSs)的辐射效应,这些源基于三段不同长度的掺Er的纤维。我们观察到,对于SFS,1530 nm波段的信号光的辐射诱导衰减小于1560 nm波段的辐射。因此,研究了类似高斯光谱的微调技术以减少平均波长漂移。定制了过滤器,并将其用于超荧光纤维源。为了进一步减少输出功率损耗,SFS采用了带泵功率反馈控制的方法。然后,在辐射环境下以2.988 Gy / h的剂量率测试了具有泵反馈控制的微调光谱SFS。实验结果表明,在总剂量大于1000 Gy的情况下,平均波长漂移小于40 ppm,输出功率损耗小于0.2 dB。这些发现证实了该方法在改善辐射环境下纤维源的抗辐射能力中的重要性。

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