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光漂白的多光子动力学

Many-photon dynamics of photobleaching.

作者信息

Gavrilyuk S, Polyutov S, Jha P C, Rinkevicius Z, Agren H, Gel'mukhanov F

机构信息

Theoretical Chemistry, Royal Institute of Technology, Roslagstullsbacken 15, S-106 91, Stockholm, Sweden.

出版信息

J Phys Chem A. 2007 Nov 29;111(47):11961-75. doi: 10.1021/jp074756x. Epub 2007 Nov 3.

Abstract

A detailed dynamical theory of photobleaching by periodical sequences of laser pulses is presented. The theory is used for interpretation of recent experiments with pyrylium salts. Our simulations are based on first-principles simulations of photoabsorption cross-sections and on empirical rate constants. Two competitive channels of photobleaching, namely, photobleaching from the lowest excited singlet and triplet states and from higher excited states, are found to explain different intensity dependences of the photobleaching rates in different samples. The process includes two-photon excitation from the ground state to the first or second excited singlet states and one-photon excitation from the first singlet or triplet states to higher excited states. The fluorescence follows double-exponential dynamics with two characteristic times. The first and the shorter one is the equilibrium settling time between the ground and the lowest triplet states. The second characteristic time, the time of photobleaching, is responsible for the long-term dynamics. The effective rate of photobleaching from the first excited singlet and lowest triplet states depends differently on the irradiance in comparison with the photobleaching in higher states. The first channel is characterized by a quadratic intensity dependence in contrast to the second channel that shows a cubic dependence. The competition between these photobleaching channels is very sensitive to the rate constants as well as to the repetition rate, the pulse duration, and the peak intensity. The double-exponential decay of the fluorescence is explained by the spatial inhomogeneity of the light beam. The findings in this work are discussed in terms of the possibility of using many-photon-induced photobleaching for new three-dimensional read-write devices.

摘要

本文提出了一种关于激光脉冲周期性序列导致光漂白的详细动力学理论。该理论用于解释近期有关吡喃鎓盐的实验。我们的模拟基于光吸收截面的第一性原理模拟以及经验速率常数。发现光漂白的两个竞争通道,即从最低激发单重态和三重态以及从更高激发态的光漂白,可解释不同样品中光漂白速率的不同强度依赖性。该过程包括从基态到第一或第二激发单重态的双光子激发以及从第一单重态或三重态到更高激发态的单光子激发。荧光遵循具有两个特征时间的双指数动力学。第一个且较短的时间是基态与最低三重态之间的平衡稳定时间。第二个特征时间,即光漂白时间,负责长期动力学。与更高激发态的光漂白相比,从第一激发单重态和最低三重态的有效光漂白速率对辐照度的依赖不同。第一个通道的特征是强度呈二次方依赖关系,而第二个通道呈三次方依赖关系。这些光漂白通道之间的竞争对速率常数以及重复率、脉冲持续时间和峰值强度非常敏感。荧光的双指数衰减是由光束的空间不均匀性解释的。本文的研究结果从利用多光子诱导光漂白用于新型三维读写设备的可能性方面进行了讨论。

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