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首页> 外文期刊>Chemical Physics Letters >Quantum dynamics of HF photodissociation in icosahedral Ar_(12)HF clusters: rotational control of the hydrogen atom cage exit
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Quantum dynamics of HF photodissociation in icosahedral Ar_(12)HF clusters: rotational control of the hydrogen atom cage exit

机译:二十面体Ar_(12)HF团簇中HF光解离的量子动力学:氢原子笼出口的旋转控制

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摘要

The photodissociation dynamics of HF molecules embedded in icosahedral HFAr_(12) clusters upon excitation with an ultrashort light-pulse is investigated. Assuming a frozen cluster, three-dimensional symmetry adapted wavepackets for the hydrogen photofragment are propagated in time. The emphasis is on the dependence of the HF photodissociation dynamics on the initial quantum state of the diatomic molecule. Depending on the spatial characteristics of the initial rotational state inside the rare gas cage, different cage exit probabilities are found. This opens the way to a rotational control of photochemistry of small molecules in weakly bound clusters.
机译:研究了在超短光脉冲激发下嵌入二十面体HFAr_(12)团簇的HF分子的光解动力学。假设有一个冻结的簇,则氢光碎片的三维对称适应波包会及时传播。重点在于HF光解离动力学对双原子分子初始量子态的依赖性。根据稀有气体笼内初始旋转状态的空间特征,可以找到不同的笼形出口概率。这为旋转控制弱结合簇中小分子的光化学开辟了道路。

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