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首页> 外文期刊>Physical Review, B. Condensed Matter >Absolute thermal lens method to determine fluorescence quantum efficiency and concentration quenching of solids
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Absolute thermal lens method to determine fluorescence quantum efficiency and concentration quenching of solids

机译:绝对热透镜法测定固体的荧光量子效率和浓度猝灭

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An absolute thermal lens method to determine fluorescence quantum efficiency and concentration quenching of solids is described in this work. The quantum efficiency of low silica calcium aluminate glasses doped with different concentrations of neodymium dioxide and melted under vacuum conditions to remove water has been measured by using mode-mismatched thermal lens spectrometry. It has been shown that the thermal lens signal amplitude is linearly dependent on neodymium concentrations up to 4.0 wt %, changing significantly from 4.5 to 5.0 wt %, indicating that there was quenching of the fluorescence only above 4.0 wt % neodymium dioxide. The quantitative treatment for the thermal lens effect provided the absolute value of the sample's fluorescence quantum efficiency. The technique is simple to perform and can be applied for a wide range of fluorescent materials. [S0163-1829(98)00714-0]. [References: 21]
机译:在这项工作中描述了确定荧光量子效率和固体浓度猝灭的绝对热透镜法。通过使用模式不匹配的热透镜光谱法,已测量了掺有不同浓度的二氧化钕并在真空条件下熔融以除去水的低硅铝酸钙铝玻璃的量子效率。已经显示,热透镜信号幅度线性地取决于钕浓度,直至4.0wt%,从4.5wt%显着变化至5.0wt%,这表明仅在4.0wt%二氧化钕以上才出现荧光猝灭。热透镜效应的定量处理提供了样品的荧光量子效率的绝对值。该技术易于执行,可用于多种荧光材料。 [S0163-1829(98)00714-0]。 [参考:21]

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