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PICOSECOND DYNAMICS OF INTRAMOLECULAR VIBRATIONAL-ENERGY REDISTRIBUTION (IVR) IN JET-COOLED MOLECULES.

机译:射流冷却分子的分子内振动能重新分布(IVR)的范式动力学。

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摘要

Theoretical and experimental results concerning the dynamical manifestations of intramolecular vibrational-energy redistribution (IVR) in the temporally resolved fluorescence of jet-cooled molecules are presented. A first concern is with the derivation of the characteristics of the beat-modulated fluorescence decays which arise from multilevel vibrational coupling within a molecule. Relations connecting quantum beat frequencies, phases, and modulation depths to coupling parameters are presented. Likely sources of deviations of experimental results from theoretical predictions are considered. And, the direct link between IVR and time-resolved fluorescence experiments is discussed with emphasis placed on the physical interpretation of vibrational quantum beats and the nature of IVR as a function of vibrational energy in a molecule. Secondly, the results of picosecond time-resolved measurements of IVR on jet-cooled anthracene at different excess energies are reported and analyzed. The nature of IVR as a function of vibrational energy, the relevant timescales for the process, and the details of pertinent vibrational couplings are determined. Thirdly, experimental and theoretical results pertaining to the role of molecular rotations in IVR are presented. Finally, experimental results on jet-cooled t-stilbene are reported and analyzed with the aim of assessing the generality of our theoretical treatment and the anthracene results.
机译:提出了有关分子内振动能量重新分布(IVR)在喷射冷却分子的时间分辨荧光中的动力学表现的理论和实验结果。首先要关注的是由分子内多级振动耦合引起的拍子调制荧光衰减特性的推导。提出了将量子拍频,相位和调制深度与耦合参数联系起来的关系。可能考虑了实验结果与理论预测之间的偏差。并且,讨论了IVR和时间分辨荧光实验之间的直接联系,重点放在振动量子拍的物理解释以及IVR的性质作为分子中振动能量的函数上。其次,报告并分析了在喷射冷却的蒽上不同过剩能量下IVR的皮秒时间分辨测量结果。确定了IVR作为振动能量的函数的性质,该过程的相关时间表以及相关振动耦合的详细信息。第三,提出了与分子旋转在IVR中的作用有关的实验和理论结果。最后,对喷射冷却的叔二苯乙烯的实验结果进行了报道和分析,目的是评估我们理论处理的普遍性和蒽的结果。

著录项

  • 作者

    FELKER, PETER MARK.;

  • 作者单位

    California Institute of Technology.;

  • 授予单位 California Institute of Technology.;
  • 学科 Physics Molecular.
  • 学位 Ph.D.
  • 年度 1985
  • 页码 237 p.
  • 总页数 237
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子物理学、原子物理学;
  • 关键词

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