Photon management in SiO2-SnO2:Yb3+ hybrid 1D microcavity

FIBER LASERS AND GLASS PHOTONICS: MATERIALS THROUGH APPLICATIONS III(2022)

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摘要
In this work, we present preliminary results of the fabrication and characterization of 1D Fabry-Perot microcavity realized on Yb3+ activated SiO2-SnO2 glass-ceramic (SiO2-SnO2:Yb3+). A radiofrequency-sputtering/sol-gel hybrid deposition process was developed for the microcavity fabrication. The fabrication included (i) radiofrequency-sputtering (rf-sputtering) of SiO2/HfO2 Bragg reflectors and (ii) sol-gel deposition of the active SiO2-SnO2:Yb3+ defect layer. A good control and enhancement of the spontaneous emission for Yb3+ luminescence sensitized by SnO2 nanocrystals was achieved exploiting microcavity properties. Such results are valuable for development of low-threshold rare-earth-based coherent light sources, pumped by broadband UV diodes.
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关键词
rare-earth sensitizers, ytterbium luminescence, SiO2-SnO2 glass-ceramics, SnO2 nanocrystals, Fabry-Perot microcavity
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