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Dynamics of intramolecular vibrational-energy redistribution (IVR). III. Role of molecular rotations

机译:分子内振动能重新分布(IVR)的动力学。三,分子旋转的作用

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摘要

Experimental results on jet-cooled anthracene pertaining to the role of rotations in IVR processes are presented. For theoretical comparison, we consider the effects of molecular rotational level structure on the beat-modulated decays that arise as manifestations of IVR. It is shown theoretically for anharmonic coupling that small differences in rotational constants between coupled vibrational states give rise to decays, the beat envelopes of which decay faster than the unmodulated portions of the decays. These envelope decay rates are shown to be rotational temperature dependent. The experimental results reveal behavior entirely consistent with the theoretical expectations. The results also show that although rotational effects are present in experimental decays, they are not so marked as to wash out the manifestations of vibrational coherence.
机译:喷射冷却的蒽的实验结果与IVR过程中的旋转作用有关。为了进行理论比较,我们考虑分子旋转能级结构对IVR表现出的节拍调制衰减的影响。对于非谐波耦合,从理论上可以看出,耦合振动状态之间旋转常数的微小差异会引起衰减,其节拍包络的衰减快于衰减的未调制部分。这些包络衰减率显示为取决于旋转温度。实验结果表明其行为与理论预期完全一致。结果还表明,尽管实验衰减中存在旋转效应,但它们的特征并不足以消除振动相干的表现。

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  • 作者单位
  • 年度 1985
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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