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Amplifications in the S-, C- and L-bands using RE-ion doped short tellurite fibres with 980 nm and 800 nm excitation sources

机译:使用掺有980 nm和800 nm激发源的RE离子掺杂的短碲酸盐光纤在S,C和L波段进行放大

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摘要

We report the results of emission and amplification in Tm~(3+)- and Er~(3+)-fibres for signal gain in the 1420 nm to 1600 nm wavelength range, which covers S-, C- and L-bands of silica fibre optical communication networks. The paper explains the mechanism for alleviating the pump excited state absorption (ESA) in Er-doped tellurite fibres for maximizing the pump inversion efficiency at 980 nm using the Ce-ions as a co-dopant and via the structural modification of TeO_2 glass using B_2O_3. The spectroscopic data and gain bandwidth of Er-doped fibres are reported in the C- and L-bands. Methods for enhancing gain in the S-band using the co-dopants (Tb~(3+), Yb~(3+)) with 800 nm and 980 nm pumping schemes are also explained. The measured maximum relative gain in short fibres of 5 to 10 cm in length in C- and L-bands are: 30 dB and 15 dB, respectively. By comparison the internal gain in a 20 cm long Tm/Yb ion co-doped fibre pumped with a 980 nm source was 7dB.
机译:我们报告了Tm〜(3 +)-和Er〜(3+)光纤在1420 nm至1600 nm波长范围内的信号增益范围内的发射和放大结果,这些信号覆盖了S-,C-和L-波段石英光纤通信网络。本文解释了通过使用Ce离子作为共掺杂剂以及通过使用B_2O_3对TeO_2玻璃进行结构改性来减轻掺Er碲酸盐纤维中的泵浦激发态吸收(ESA)的机制,以最大程度地提高980 nm的泵浦转化效率。 。掺Er光纤的光谱数据和增益带宽在C波段和L波段报告。还说明了使用共掺杂剂(Tb〜(3 +),Yb〜(3 +)),800 nm和980 nm泵浦方案增强S波段增益的方法。在C波段和L波段,长度为5至10 cm的短纤维中测得的最大相对增益分别为:30 dB和15 dB。相比之下,泵浦有980 nm光源的20 cm长的Tm / Yb离子共掺杂光纤的内部增益为7dB。

著录项

  • 来源
    《》|2006年|P.61160K.1-61160K.8|共8页
  • 会议地点 San JoseCA(US)
  • 作者单位

    The Institute of Materials Research, University of Leeds LS2 9JT, UK;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学仪器;
  • 关键词

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