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Angular distribution of laser-induced fluorescence emission of active dyes in scattering media

机译:激光诱导散射介质中活性染料荧光发射的角分布

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摘要

Angular dependence of the intensity and the emissive wavelength of the laser-induced fluorescence emission in hybrid media (fluorophores + nanoparticles) are investigated using various TiO2 densities as guest nanoscatterers in the ethanolic solutions of the host Rd6G and coumarin 4 (C4) molecules. It is shown that the intensity of the scattered photons varies in terms of the detection angle. When the nanoscatterer density increases at a certain excitation energy, the angular anisotropy enhances. While the emissive wavelength exhibits the spectral shift in terms of the angular variation for Rd6G fluorophores, it remains invariant for C4-based suspension. In the former case, the emissive wavelength undergoes a spectral shift in terms of angular variation. Several factors such as the optical path length in the scattering media, the excitation volume, and the re-absorption events of the fluorescence emissions by the non-excited molecules strongly affect the spectral features. In fact, the density of the scatterers, the dye concentration, and the interplay between Stokes shift rate and the overlapping between absorption/emission spectra of the given fluorophores are taken into account as the major parameters to form the angular distribution. (C) 2017 Optical Society of America.
机译:使用各种TiO2密度作为宿主RD6G和香豆素4(C4)分子的乙醇溶液中的各种TiO2密度来研究激光诱导的杂种培养基(荧光团+纳米粒子)中激光诱导的荧光发射的强度和发光波长的角度依赖性。结果表明,散射光子的强度在检测角度方面变化。当纳米透镜密度在一定的激发能中增加时,角度各向异性增强。虽然发光波长在RD6G荧光团的角度变化方面表现出光谱转变,但它仍然是C4基悬浮液的不变。在前一种情况下,发光波长在角度变化方面经历光谱偏移。诸如散射介质中的光路长度,激发体积和非激发分子的荧光发射的再吸收事件的几个因素强烈影响光谱特征。实际上,作为主要参数,考虑散射体,染料浓度和斯托克换速与给定荧光团的吸收/发射光谱之间的相互作用的密度作为形成角度分布。 (c)2017年美国光学学会。

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  • 来源
    《Applied optics》 |2018年第7期|共7页
  • 作者单位

    Amirkabir Univ Technol Phys Dept POB 15875-4413 Tehran Iran;

    Amirkabir Univ Technol Phys Dept POB 15875-4413 Tehran Iran;

    Amirkabir Univ Technol Phys Dept POB 15875-4413 Tehran Iran;

    Amirkabir Univ Technol Phys Dept POB 15875-4413 Tehran Iran;

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  • 正文语种 eng
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