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首页> 外文期刊>Ceramics >On the Enlargement of the Emission Spectra from the 4I13/2 Level of Er3+ in Silica-Based Optical Fibers through Lanthanum or Magnesium Co-Doping
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On the Enlargement of the Emission Spectra from the 4I13/2 Level of Er3+ in Silica-Based Optical Fibers through Lanthanum or Magnesium Co-Doping

机译:基于镧或镁共掺杂的石英基光纤中Er3 +的4I13 / 2能级发射光谱的扩大

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Improving optical fiber amplifiers requires the elaboration and use of new materials and new compositions. In this sense, we prepared erbium-doped optical fiber samples that were co-doped with magnesium or lanthanum by gradual-time solution doping. Doping concentrations and thermal processes induce the formation of nanoparticles. The effect of lanthanum and magnesium contents on the width of the spontaneous emission of the 4 I 13 / 2 level of Er 3 + was characterized in the nanoparticle-rich fiber samples. For that purpose, the width was characterized by the effective linewidth and the full-width at half-maximum (FWHM). The results indicate the robustness of the effective linewidth to strong variations in the intensity profiles of the 4 I 13 / 2 spontaneous emission. Increasing the doping concentrations of both magnesium and lanthanum increases the FWHM and the effective linewidth, along with optical losses. Results show that the fabrication of nanoparticle-rich optical fibers through lanthanum or magnesium doping induces an FHWM broadening of 54% and 64%, respectively, or an effective linewidth broadening of 59% (for both elements) while maintaining a transparency that is compatible with fiber laser and amplifier applications.
机译:改进光纤放大器需要精心设计和使用新材料和新成分。从这个意义上讲,我们制备了掺b光纤样品,通过逐步溶液掺杂法将它们掺入了镁或镧。掺杂浓度和热过程诱导了纳米颗粒的形成。在富含纳米颗粒的纤维样品中,表征了镧和镁含量对4 I 13/2能级Er 3 +自发发射宽度的影响。为此,宽度以有效线宽和半峰全宽(FWHM)为特征。结果表明有效线宽对4 I 13/2自发发射强度分布的强烈变化的鲁棒性。镁和镧的掺杂浓度增加会增加FWHM和有效线宽以及光学损耗。结果表明,通过掺杂镧或镁来制造富含纳米颗粒的光纤会分别导致FHWM展宽54%和64%,或有效线宽展宽59%(对于两种元素),同时保持与光纤激光器和放大器的应用。

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