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Effective chromophore potential, dissipative trajectories, and vibrational energy relaxation: Br-2 in Ar matrix

机译:有效生色团势,耗散轨迹和振动能弛豫:Ar基质中的Br-2

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摘要

The intramolecular wave packet dynamics on the electronic B ((3)Pi(0)) potential of Br-2 in solid argon is induced and interrogated by femtosecond pump-probe spectroscopy. An effective potential of the chromophore in the solid is derived from the wave packet period for different excitation photon energies. Deep in the potential well, it is consistent with vibrational energies from wavelength-resolved spectra. It extends to higher energies, where the vibrational bands merge to a continuum, and even beyond the dissociation limit, thus quantifying the cage effect of the argon matrix. This advantage of pump-probe spectroscopy is related to a reduced contribution of homogeneous and inhomogeneous line broadenings. The vibrational energy relaxation rates are determined by a variation of the probe window spatial position via the probe quantum energy. A very large energy loss in the first excursion of the wave packet is observed near the dissociation limit. This strong interaction with the argon matrix is directly displayed in an experimental trajectory. (c) 2005 American Institute of Physics.
机译:飞秒泵浦探针光谱法对固体氩气中Br-2的电子B((3)Pi(0))电势进行分子内波动力学分析。固体中发色团的有效电势是由不同激发光子能量的波包周期得出的。在势阱的深处,它与来自波长分辨光谱的振动能量一致。它扩展到更高的能量,在这里振动带合并成一个连续体,甚至超过了解离极限,从而量化了氩气基质的笼型效应。泵浦探针光谱法的这一优势与减少均匀和不均匀谱线展宽的作用有关。振动能量的松弛率取决于通过探针量子能量的探针窗口空间位置的变化。在离解极限附近,在波包的第一次偏移中观察到非常大的能量损失。与氩气基质的这种强相互作用直接显示在实验轨迹中。 (c)2005年美国物理研究所。

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