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光谱可调谐飞秒单分子泵浦-探测光谱学

Spectrally-tunable femtosecond single-molecule pump-probe spectroscopy.

作者信息

Moya Raymundo, Kondo Toru, Norris Audrey C, Schlau-Cohen Gabriela S

出版信息

Opt Express. 2021 Aug 30;29(18):28246-28256. doi: 10.1364/OE.432995.

Abstract

Single-molecule spectroscopy has been extensively used to investigate heterogeneity in static and dynamic behaviors on millisecond and second timescales. More recently, single-molecule pump-probe spectroscopy emerged as a method to access heterogeneity on the femtosecond and picosecond timescales. Here, we develop a single-molecule pump-probe apparatus that is easily tunable across the visible region and demonstrate its utility on the widely-used fluorescent dye, Atto647N. A spectrally-independent, bimodal distribution of energetic relaxation time constants is found, where one peak corresponds to electronic dephasing (∼ 100 fs) and the other to intravibrational relaxation (∼ 300 fs). The bimodal nature indicates that relaxation within each individual molecule is dominated by only one of these processes. Both peaks of the distribution are narrow, suggesting little heterogeneity is present for either process. As illustrated here, spectrally-tunable single-molecule pump-probe spectroscopy will enable investigation of the heterogeneity in a wide range of biological and material systems.

摘要

单分子光谱已被广泛用于研究毫秒和秒时间尺度上静态和动态行为的异质性。最近,单分子泵浦-探测光谱作为一种在飞秒和皮秒时间尺度上获取异质性的方法出现了。在这里,我们开发了一种单分子泵浦-探测装置,它可以在可见光区域轻松调谐,并在广泛使用的荧光染料Atto647N上展示了其效用。我们发现了一个与光谱无关的、能量弛豫时间常数的双峰分布,其中一个峰对应于电子去相(约100飞秒),另一个峰对应于振动内弛豫(约300飞秒)。双峰性质表明,每个单独分子内的弛豫仅由这些过程中的一个主导。分布的两个峰都很窄,这表明这两个过程中几乎不存在异质性。如此处所示,光谱可调谐的单分子泵浦-探测光谱将能够研究广泛的生物和材料系统中的异质性。

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