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Strong-field Dissociative Ionization as a Probe of Molecular Dynamics and Structure.

机译:强场解离电离作为分子动力学和结构的探索。

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摘要

We present work on strong-field ionization of polyatomic molecules. Strong-field ionization has been in focus of recent research efforts in ultrafast atomic, molecular and optical science, due to its role in the generation of attosecond pulses and as a probe of both nuclear and electronic dynamics, and in imaging of molecular orbitals.;Ultrafast relaxation of excited state DNA and RNA bases, instrumental to their photostability, was tracked using strong-field dissociative ionization. Relaxation through multiple pathways has been observed and interpreted in terms of the excited state wavepacket dynamics. The example of cytosine is presented in detail.;The electronic dynamics associated with the strong-field ionization process were explored, in particular the role of the symmetry of the neutral orbital from which the electron was removed. For ionization from the highest lying occupied orbital, the ionization yields are shown to reflect the symmetry of the orbital. Ionization from a deeper bound orbital is found to be more complicated. Further, we find that a detailed treatment of ion-electron interactions that take place during the ionization process is necessary to achieve a qualitative agreement between final-state-resolved calculations and experiments.
机译:我们目前在多原子分子强场电离方面的工作。由于强磁场电离在产生阿秒脉冲,作为核动力和电子动力学的探测以及在分子轨道成像中的作用,因此一直是超快原子,分子和光学科学领域近期研究工作的重点。使用强场解离电离跟踪了激发态DNA和RNA碱基的超快弛豫,这对它们的光稳定性起了重要作用。已经观察到并通过多种途径的弛豫,并根据激发态波包动力学进行了解释。详细介绍了胞嘧啶的例子。研究了与强场电离过程相关的电子动力学,特别是中性轨道的对称性所起的作用。对于从位于最高位置的占据轨道进行电离,显示出电离产率可反映出轨道的对称性。发现来自更深边界轨道的电离更加复杂。此外,我们发现对电离过程中发生的离子电子相互作用的详细处理对于实现最终状态解析的计算和实验之间的定性一致是必要的。

著录项

  • 作者

    Kotur, Marija.;

  • 作者单位

    State University of New York at Stony Brook.;

  • 授予单位 State University of New York at Stony Brook.;
  • 学科 Physics General.;Physics Molecular.;Physics Atomic.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 133 p.
  • 总页数 133
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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