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Two-photon fluorescence correlation spectroscopy with high count rates and low background using dielectric microspheres

机译:使用介电微球的高计数率和低背景的双光子荧光相关光谱

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摘要

Two-photon excitation fluorescence is a powerful technique commonly used for biological imaging. However, the low absorption cross section of this non-linear process is a critical issue for performing biomolecular spectroscopy at the single molecule level. Enhancing the two-photon fluorescence signal would greatly improve the effectiveness of this technique, yet current methods struggle with medium enhancement factors and/or high background noise. Here, we show that the two-photon fluorescence signal from single Alexa Fluor 488 molecules can be enhanced up to 10 times by using a 3 µm diameter latex sphere while adding almost no photoluminescence background. We report a full characterization of the two-photon fluorescence enhancement by a single microsphere using fluorescence correlation spectroscopy. This opens new routes to enhance non-linear optical signals and extend biophotonic applications.
机译:双光子激发荧光是生物成像常用的强大技术。但是,这种非线性过程的低吸收截面是在单分子水平上进行生物分子光谱学的关键问题。增强双光子荧光信号将大大提高该技术的有效性,但是当前的方法在中等增强因子和/或高背景噪声的情况下仍处于挣扎状态。在这里,我们显示,通过使用直径为3 µm的乳胶球,可以将来自单个Alexa Fluor 488分子的双光子荧光信号增强多达10倍,而几乎不添加任何光致发光背景。我们报告使用荧光相关光谱法的单个微球的双光子荧光增强的完整表征。这为增强非线性光学信号和扩展生物光子应用开辟了新途径。

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