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Probing correlated spectral motion:Two-color photon echo study of Nile blue

机译:探测相关光谱运动:尼罗蓝的双色光子回波研究

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We performed two-color three-pulse photon echo peak shift experiments on Nile blue in ethylene glycol and acetonitrile to determine the role of solvent dynamics in correlated spectral motion.The system was pumped near the absorption maximum and the correlation between the initial state and the final state was probed at a number of wavelengths,from the absorption maximum to the fluorescence maximum.In addition to solvent dynamics,we found that strongly coupled intramolecular vibrations generated correlations between different spectral regions.The inertial solvent response was found for both solvents to have a time scale on the order of 100-145 fs.This response contributed half of the solvent interaction strength for acetonitrile,but less than a third for ethylene glycol.Several diffusive time scales were observed:500 fs and 2.5 ps for acetonitrile,and 1,15,and 100 ps for ethylene glycol.A single description of the solvation dynamics was insufficient to quantitatively describe the dynamics at all probe wavelengths,which could indicate different dynamics in the ground and excited states or the presence of an additional contribution to the signal from the excited-state absorption.
机译:我们在乙二醇和乙腈中的尼罗蓝上进行了两色三脉冲光子回波峰移动实验,以确定溶剂动力学在相关光谱运动中的作用。系统被泵浦到最大吸收附近,并且初始状态与吸光度之间存在相关性在从吸收最大值到荧光最大值的多个波长下探测了最终状态。除了溶剂动力学,我们发现强耦合分子内振动还产生了不同光谱区域之间的相关性。发现两种溶剂都具有惯性溶剂响应时间范围为100-145 fs。此响应对乙腈贡献了一半的溶剂相互作用强度,但对乙二醇的贡献不到三分之一。观察到几个扩散时间范围:乙腈为500 fs和2.5 ps,以及1乙二醇的溶解时间分别为15、15和100 ps。对溶剂化动力学的单一描述不足以定量描述动力学cs在所有探针波长处都可能指示基态和激发态的动态不同,或者对激发态吸收的信号存在其他贡献。

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