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Two-Photon Thermal Bleaching of Single Fluorescent Molecules

机译:单个荧光分子的双光子热漂白

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摘要

We have studied the fluorescence emission by two-photon excitation of four dyes widely used for bioimaging studies, rhodamine 6G, fluorescein, pyrene and indo-1 at the single molecule level. The single dye molecules, spread on a glass substrate by spin coating, show a constant fluorescence output until a sudden transition to a dark state very close to the background. The bleaching time that is found to vary in the series pyrene, indo-1, fluorescein and rhodamine 6G from the fastest to the slowest one respectively, has a Gaussian distribution indicating that the observed behavior is not due to photobleaching. Moreover, the bleaching time decreases with the glass substrate temperature reaching a vanishing nonmeasurable value for a limiting temperature whose value is found in the same series as for the bleaching time, from the lowest to the highest temperature respectively. The observed bleaching shows a clear correlation to the amount of absorbed power not reirradiated as fluorescence and to the complexity of the molecule. These observations are interpreted as thermal bleaching where the temperature increase is induced by the two-photon absorption of the single dyes as confirmed also by numerical simulations.
机译:我们已经研究了两种光子在两个光子激发下的荧光发射,这四种染料广泛用于生物成像研究,如罗丹明6G,荧光素,pyr和indo-1在单分子水平上。通过旋涂散布在玻璃基板上的单个染料分子显示出恒定的荧光输出,直到突然过渡到非常接近背景的暗态。发现pyr系列,pyr 1型,荧光素和若丹明6G系列中的漂白时间分别从最快到最慢都发生了变化,其高斯分布表明观察到的行为不是由于光致漂白。而且,随着玻璃基板温度达到极限温度的消失的不可测量的值,从最低到最高,漂白时间减少,极限温度的极限温度与漂白时间的序列相同。观察到的漂白显示出与未再作为荧光再辐射的吸收功率的量以及分子的复杂性有明显的相关性。这些观察结果被解释为热漂白,其中温度升高是由单一染料的双光子吸收引起的,数值模拟也证实了这一点。

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