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Dissociation dynamics of diatomic molecules in intense fields.

机译:在强场中双原子分子的解离动力学。

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摘要

We study the dynamics of diatomic molecules (dimers) in intense IR and XUV laser fields theoretically and compare the results with measured data in collaboration with different experimental groups worldwide. The first three chapters of the thesis cover the introduction and the background on solving time-independent and time-dependent Schrodinger equation. The numerical results in this thesis are presented in four chapters, three of which are focused on diatomic molecules in IR fields. The last one concentrates on diatomic molecules in XUV pulses.;The study of nuclear dynamics of H2 or D2 molecules in IR pulses is given in Chapter 4. First, we investigate the optimal laser parameters for observing field-induced bond softening and bond hardening in D2+. Next, the nuclear dynamics of H2 + molecular ions in intense laser fields are investigated by analyzing their fragment kinetic-energy release (KER) spectra as a function of the pump-probe delay &tau.; Lastly, the electron localization is studied for long circularly polarized laser pulses.;Chapter 5 covers the dissociation dynamics of O2+ in an IR laser field. The fragment KER spectra are analyzed as a function of the pump-probe delay &tau.; Within the Born-Oppenheimer approximation, we calculate ab-initio adiabatic potential-energy curves and their electric dipole couplings, using the quantum chemistry code GAMESS.;In Chapter 6, the dissociation dynamics of the noble gas dimer ions He 2+, Ne2+, Ar2 +, Kr2+, and Xe2 + is investigated in ultrashort pump and probe laser pulses of different wavelengths. We observe a striking "delay gap" in the pump-probe-delay-dependent KER spectrum only if the probe-pulse wavelength exceeds the pump-pulse wavelength. Comparing pump-probe-pulse-delay dependent KER spectra for different noble gas dimer cations, we quantitatively discuss quantum-mechanical versus classical aspects of the nuclear vibrational motion as a function of the nuclear mass.;Chapter 7 focuses on diatomic molecules in XUV laser pulses. We trace the femtosecond nuclear-wave-packet dynamics in ionic states of oxygen and nitrogen diatomic molecules by comparing measured kinetic-energy-release spectra with classical and quantum-mechanical simulations. Experiments were done at the free-electron laser in Hamburg (FLASH) using 38-eV XUV-pump-XUV-probe.;The summary and outlook of the work is discussed in Chapter 8.
机译:我们从理论上研究了在强烈的IR和XUV激光场中双原子分子(二聚体)的动力学,并与世界各地不同的实验组合作,将结果与测量数据进行了比较。论文的前三章介绍了求解与时间无关和与时间有关的薛定inger方程的介绍和背景。论文的数值结果分为四章,其中三章主要针对红外领域中的双原子分子。最后一个集中在XUV脉冲中的双原子分子上。第四章对红外脉冲中H2或D2分子的核动力学进行了研究。首先,我们研究了观察场致键软化和键硬化的最佳激光参数。 D2 +。接下来,通过分析H 2 +分子离子的碎片动能释放(KER)光谱作为泵浦探测延迟τ的函数,研究了H 2 +分子离子在强激光场中的核动力学。最后,研究了长圆偏振激光脉冲的电子定位。第5章介绍了红外激光场中O 2+的解离动力学。片段KER光谱根据泵浦探测延迟τ的函数进行分析。在Born-Oppenheimer近似中,我们使用量子化学代码GAMESS计算ab初始绝热势能曲线及其电偶极耦合。在第6章中,稀有气体二聚体离子He 2+,Ne2 +的解离动力学在超短泵浦和不同波长的探测激光脉冲中研究了Ar2 +,Kr2 +和Xe2 +。仅当探针脉冲波长超过泵浦脉冲波长时,我们才在泵浦探针延迟相关的KER谱中观察到明显的“延迟间隙”。比较不同惰性气体二聚阳离子的泵浦-脉冲-延迟相关的KER光谱,我们定量地讨论了作为核质量函数的核振动运动的量子力学与经典方面。;第7章重点讨论了XUV激光中的双原子分子。脉冲。通过比较测得的动能释放光谱与经典和量子力学模拟,我们追踪了氧和氮双原子分子在离子态下的飞秒核波包动力学。使用38-eV XUV-pump-XUV-probe在汉堡的自由电子激光器(FLASH)上进行了实验;第8章讨论了工作的总结和展望。

著录项

  • 作者

    Magrakvelidze, Maia.;

  • 作者单位

    Kansas State University.;

  • 授予单位 Kansas State University.;
  • 学科 Molecular physics.;Atomic physics.;Theoretical physics.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 207 p.
  • 总页数 207
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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