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Erbium-doped transparent glass ceramic optical fibres: Characterization using mass spectroscopy and molecular dynamics modeling

机译:掺transparent透明玻璃陶瓷光纤:使用质谱和分子动力学建模进行表征

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摘要

Rare earth (RE) doped silica-based optical fibres with transparent glass ceramic (TGC) core were fabricated through the well-known modified chemical vapor deposition (MCVD) process without going through the commonly used stage of post-ceramming. The main characteristics of the RE-doped dielectric nanoparticles (DNP), their density and mean diameter in the fibres are dictated by various parameters. This paper reports on progresses in the fine characterization of the nanopaticles, particularly their dimensions and composition, using nanosclae mass spectroscpy and molecular dynamics modeling, and alteration of the spectroscopic properties of the erbium ions embedded within the phospho-silicate DNP. These results permit to get more insight into the complex process of the DNP self-nucleation and growth during the fibre fabrication process. This fabrication route could have important potentials in improving rare-earth-doped fibre amplifiers and laser sources.
机译:通过众所周知的改良化学气相沉积(MCVD)工艺制造了具有透明玻璃陶瓷(TGC)芯的掺稀土(RE)的二氧化硅基光纤,而无需经过通常使用的后陶瓷化阶段。稀土掺杂介电纳米颗粒(DNP)的主要特性,其密度和纤维中的平均直径由各种参数决定。本文报道了使用纳米切片质谱和分子动力学模型对纳米颗粒进行精细表征,特别是其尺寸和组成方面的研究进展,以及嵌入磷硅酸盐DNP中的离子的光谱性质变化。这些结果使我们能够更深入地了解光纤制造过程中DNP自成核和生长的复杂过程。这种制造路线在改善掺稀土的光纤放大器和激光源方面可能具有重要的潜力。

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