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首页> 外文期刊>Applied optics >Supercontinuum-laser diffuse reflectance spectroscopy in conjunction with an extended Kubelka-Munk model-a methodology for determination of temperature-dependent quantum efficiency in highly scattering and fluorescent media
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Supercontinuum-laser diffuse reflectance spectroscopy in conjunction with an extended Kubelka-Munk model-a methodology for determination of temperature-dependent quantum efficiency in highly scattering and fluorescent media

机译:超中心激光弥散反射光谱与扩展Kubelka-Munk模型 - 一种用于测定高度散射和荧光介质的温度依赖量子效率的方法

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摘要

Temperature-dependent diffuse reflectance measurements on Cr-doped alpha-alumina monoliths have been performed using supercontinuum-laser illumination and CO2-laser heating. These measurements have been interpreted using an extended Kubelka-Munk (K-M) model describing diffuse-light propagation in highly scattering and fluorescent media to assess the temperature dependence of fluorescence quantum efficiency. Analysis of experimental results has provided a qualitative understanding of the temperature-dependent conditions for model applicability and also suggests methods for using supercontinuum-laser diffuse reflectance spectroscopy for detection of unknown fluorescent dopants. (C) 2019 Optical Society of America
机译:已经使用超连续激光照射和CO2激光加热进行了温度依赖性衍射反射率测量。 使用描述高度散射和荧光介质中的扩散光传播的扩展Kubelka-Munk(K-M)模型进行了解释这些测量。评估荧光量子效率的温度依赖性。 实验结果的分析提供了对模型适用性的温度依赖条件的定性理解,并且还表明了使用超连续激光弥散反射光谱的方法检测未知的荧光掺杂剂。 (c)2019年光学学会

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  • 来源
    《Applied optics》 |2019年第10期|共8页
  • 作者单位

    Johns Hopkins Univ Dept Mat Sci &

    Engn 3400 North Charles St Baltimore MD 21218 USA;

    Johns Hopkins Univ Appl Phys Lab 11100 Johns Hopkins Rd Laurel MD 20723 USA;

    Johns Hopkins Univ Appl Phys Lab 11100 Johns Hopkins Rd Laurel MD 20723 USA;

    Johns Hopkins Univ Appl Phys Lab 11100 Johns Hopkins Rd Laurel MD 20723 USA;

    Johns Hopkins Univ Appl Phys Lab 11100 Johns Hopkins Rd Laurel MD 20723 USA;

    Johns Hopkins Univ Appl Phys Lab 11100 Johns Hopkins Rd Laurel MD 20723 USA;

    Johns Hopkins Univ Dept Mat Sci &

    Engn 3400 North Charles St Baltimore MD 21218 USA;

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