On the Extraction of Time Information From Energy-Resolved Experiments

Laser Chemistry Pub Date : 1900-01-01 DOI:10.1155/LC.3.85
J. Durup
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Abstract

It is well known that in principle energy-resolved and time-resolved experiments provide complementary information. A few examples are reviewed where the time evolution of rapidly relaxing molecular systems is or could be better studied by energy-resolved experiments: (1) the evolution of a pair of resonances coupled with each other through a set of continua, (2) an irreversible relaxation of the intermediate state in the two-photon excitation of a polyatomic molecule, and (3) the derivation of a “dissociation time” from the angular distribution of fragments from photodissociation by linearly polarized light. In the first case it is shown how all parameters necessary for a time-dependent description may be obtained from the measurement, as functions of the excitation wavelength, of both the total absorption cross section across the resonances and the partial cross section for a single exit channel. In the last two cases the relevance of a description in terms of an “eigentime” of the molecule is demonstrated.
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能量分辨实验中时间信息的提取
众所周知,原则上能量分辨实验和时间分辨实验提供了互补的信息。回顾了几个例子,其中快速弛豫分子系统的时间演化是或可以通过能量分辨实验来更好地研究的:(1)通过一组连续体相互耦合的一对共振的演化;(2)多原子分子双光子激发中中间态的不可逆弛豫;(3)由线偏振光光解离碎片的角分布推导出“解离时间”。在第一种情况下,它显示了如何从测量中获得与时间相关的描述所需的所有参数,作为激发波长的函数,通过共振的总吸收截面和单个出口通道的部分截面。在最后两种情况下,用分子的“本征时间”来描述的相关性得到了证明。
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