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Revealing the radiative and non-radiative relaxation rates of the fluorescent dye Atto488 in a lambda/2 Fabry-Perot-resonator by spectral and time resolved measurements

机译:揭示了辐射和无辐射荧光染料的弛豫率Atto488在λ/ 2 Fabry-Perot-resonator光谱和时间分辨测量

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摘要

Using a Fabry-Perot-microresonator with controllable cavity lengths in the lambda/2-regime, we show the controlled modification of the vibronic relaxation dynamics of a fluorescent dye molecule in the spectral and time domain. By altering the photonic mode density around the fluorophores we are able to shape the fluorescence spectrum and enhance specifically the probability of the radiative transitions from the electronic excited state to distinct vibronic excited states of the electronic ground state. Analysis and correlation of the spectral and time resolved measurements by a theoretical model and a global fitting procedure allows us to reveal quantitatively the spectrally distributed radiative and non-radiative relaxation dynamics of the respective dye molecule under ambient conditions at the ensemble level.
机译:用一个Fabry-Perot-microresonator可控腔长度的λ/ 2-regime,我们显示的控制修改电子振动的弛豫动力学光谱和荧光染料分子时间域。在荧光团我们能密度荧光光谱,提高形状特别是辐射的概率从电子激发态的转变不同的电子振动的激发态电子基态。的光谱和时间分辨测量理论模型和全局拟合过程让我们定量地揭示幽灵般分布式辐射和无辐射弛豫动力学的在环境条件下各自的染料分子在整体层面。

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