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Molecular homogeneity in erbium-doped sol-gel waveguide amplifiers

机译:掺b溶胶-凝胶波导放大器中的分子均匀性

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High net gain levels have recently been reported in silica-on-silicon waveguide amplifiers, using the sol-gel method of glass deposition. Spectroscopic measurements indicate that high inversion levels are achieved at high erbium concentrations, suggesting a high uniformity in the erbium distribution. Here we show that high inversion and low scattering losses are only achieved in sol-gel waveguides which have had restricted heat treatment and that both degrade upon additional annealing. Evolution of scattering loss spectra are presented, and these are included in a model of the ytterbium-sensitized waveguide amplifiers to show that the gain reduction with heat treatment is not wholly due to pump and signal excess losses, but also to changes in the spectroscopic properties of the erbium ions. In particular, the formation of clusters in which inversion is rapidly quenched is indicated. Thus, we show that the superior performance of the sol-gel method for rare-earth doping of silica waveguides, for amplifier and laser applications, results from its ability to form homogenous molecular structures which are meta-stable and which consequently cannot be formed in glasses that require high-temperature consolidation or annealing.
机译:最近,使用玻璃沉积的溶胶-凝胶法在硅基二氧化硅波导放大器中报道了高净增益水平。光谱测量表明,在高concentrations浓度下可实现高反型水平,这表明the分布具有高度均匀性。在这里,我们表明,只有在热处理受限的溶胶-凝胶波导中才能实现高反型和低散射损耗,并且溶胶-凝胶波导在额外退火后都会退化。给出了散射损耗光谱的演变,并将其包括在-敏化波导放大器的模型中,以显示热处理引起的增益降低不仅完全是由于泵浦和信号的过量损耗引起的,而且还归因于光谱性质的变化离子。特别地,指示了其中反转被快速淬灭的簇的形成。因此,我们证明了溶胶-凝胶法对石英波导的稀土掺杂,放大器和激光应用的优越性能,是由于其形成亚稳态的均质分子结构的能力所致,因此不能形成需要高温固结或退火的玻璃。

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