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In situ isothermal monitoring of the enhancement and quenching of Sm~3 photoluminescence in Ag co-doped glass

机译:Ag共掺杂玻璃中Sm~3光致发光增强与淬灭的原位等温监测

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摘要

A novel in situ concurrent photoluminescence and absorption microspectroscopy technique is proposed for the real-time monitoring of the optical properties of rare-earth and noble metal co-doped dielectrics during isothermal processing. The technique has been successfully applied to an Ag and Sm co-doped phosphate glass, where both enhancement and quenching regimes of Sm ~3 luminescence have been observed well separated in time, practical for an 'optical tuning' of the solid-state luminescent material. Further, relating simultaneously the luminescence with the time evolution in optical absorption allowed for discerning the effects of Ag non-plasmonic clusters as enhancers and nanoparticles as quenchers. Opportunities come forward for studying a variety of systems with relevance to a wide range of applications.
机译:提出了一种新的原位并行光致发光和吸收显微光谱技术,用于实时监测稀土和贵金属共掺杂电介质在等温加工过程中的光学性质。该技术已成功应用于Ag和Sm共掺杂磷酸盐玻璃,其中Sm~3发光的增强和淬灭状态在时间上被很好地分离,可用于固态发光材料的“光学调谐”。此外,将发光与光吸收的时间演化同时联系起来,可以辨别作为增强剂的 Ag 非等离子体团簇和作为淬灭剂的纳米颗粒的影响。有机会研究与广泛应用相关的各种系统。

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