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荧光纳米结构介质中的饱和发射态:受激发射与荧光局域发射体辐射损耗之间竞争的作用

Saturated Emission States in Fluorescent Nanostructured Media: The Role of Competition between the Stimulated Emission and Radiation Losses in the Local Emitters of Fluorescence.

作者信息

Zimnyakov Dmitry, Volchkov Sergey, Kochkurov Leonid, Dorogov Alexander

机构信息

Physics Department, Yury Gagarin State Technical University of Saratov, 410054 Saratov, Russia.

Precision Mechanics and Control Institute, Russian Academy of Sciences, 24 Rabochaya Str., 410024 Saratov, Russia.

出版信息

Nanomaterials (Basel). 2022 Jul 17;12(14):2450. doi: 10.3390/nano12142450.

Abstract

A fundamental limitation of the spectral response of laser-pumped fluorescent nanostructured media was considered in terms of a probabilistic model establishing the relationship between the enhancement factor of a spectral quality and characteristic propagation and amplification scales of pump light and fluorescence in the medium. It was shown that the minimum spectral width of fluorescent response of the pumped medium is limited by competition between the stimulated emission and radiation losses in microscopic fluorescence emitters associated with the speckles randomly modulating the pumping light field. Theoretical results were compared to the experimental data on the spectral properties of the fluorescent response of laser-pumped nanostructured "anatase nanoparticles-dye solutions" systems with various structural and optical properties. Rhodamine 6G and 4-(dicyanomethylene)-2-methyl-6-(p-dimethylaminostyryl)-4H-pyran (DCM) were applied as fluorescent components in the examined systems with various scatter volume fractions, which were pumped by pulse-periodic laser radiation with various intensities at 532 nm. Comparison showed a fair agreement between the theoretical and experimental results.

摘要

从一个概率模型的角度考虑了激光泵浦荧光纳米结构介质光谱响应的一个基本限制,该模型建立了光谱质量增强因子与介质中泵浦光和荧光的特征传播及放大尺度之间的关系。结果表明,被泵浦介质荧光响应的最小光谱宽度受到与随机调制泵浦光场的散斑相关的微观荧光发射体中受激发射与辐射损耗之间竞争的限制。将理论结果与具有各种结构和光学性质的激光泵浦纳米结构“锐钛矿纳米颗粒 - 染料溶液”系统荧光响应光谱特性的实验数据进行了比较。罗丹明6G和4 - (二氰基亚甲基) - 2 - 甲基 - 6 - (对二甲氨基苯乙烯基) - 4H - 吡喃(DCM)被用作具有不同散射体积分数的被研究系统中的荧光成分,这些系统由532nm不同强度的脉冲周期激光辐射泵浦。比较结果表明理论和实验结果相当吻合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f0d/9315858/09f8709d65ef/nanomaterials-12-02450-g001.jpg

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