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阐明强激光场诱导的多原子分子多模振动相干的起源。

Elucidating the origins of multimode vibrational coherences of polyatomic molecules induced by intense laser fields.

机构信息

Division of Chemistry and Biological Chemistry, and Division of Physics and Applied Physics, School of Physical and Mathematical Sciences, Nanyang Technological University, Singapore, 637371, Singapore.

Institute of High Performance Computing A*STAR, 1 Fusionopolis Way, #16-16 Connexis, Singapore, 138632, Singapore.

出版信息

Nat Commun. 2017 Sep 29;8(1):735. doi: 10.1038/s41467-017-00848-2.

Abstract

Strong-field laser-molecule interaction forms much of the basis for initiating and probing ultrafast quantum dynamics. Previous studies aimed at elucidating the origins of vibrational coherences induced by intense laser fields have been confined to diatomic molecules. Furthermore, in all cases examined to date, vibrational wave packet motion is found to be induced by R-selective depletion; wave packet motion launched by bond softening, though theoretically predicted, remains hitherto unobserved. Here we employ the exquisite sensitivity of femtosecond extreme ultraviolet absorption spectroscopy to sub-picometer structural changes to observe both bond softening-induced vibrational wave packets, launched by the interaction of intense laser pulses with iodomethane, as well as multimode vibrational motion of the parent ion produced by strong-field ionization. In addition, we show that signatures of coherent vibrational motion in the time-dependent extreme ultraviolet absorption spectra directly furnish vibronic coupling strengths involving core-level transitions, from which geometrical parameters of transient core-excited states are extracted.Nuclear dynamics of polyatomic molecules involves multiple degrees of freedom and is challenging to explore. Here the authors study the internuclear distance-dependent depletion and bond-softening induced vibrational wavepacket dynamics of CHI molecules using femtosecond XUV transient absorption spectroscopy.

摘要

强场激光与分子的相互作用构成了引发和探测超快量子动力学的基础。以前的研究旨在阐明由强激光场诱导的振动相干的起源,这些研究仅限于双原子分子。此外,迄今为止在所有检查的情况下,都发现振动波包运动是由 R 选择耗散引起的;尽管理论上预测了键软化引起的波包运动,但迄今为止尚未观察到。在这里,我们利用飞秒极紫外吸收光谱对亚皮米结构变化的极高灵敏度,观察到强激光脉冲与碘甲烷相互作用引发的键软化诱导的振动波包,以及强场电离产生的母离子的多模振动运动。此外,我们表明,瞬态极紫外吸收光谱中相干振动运动的特征直接提供了涉及芯能级跃迁的振子耦合强度,从中提取出瞬态芯激发态的几何参数。多原子分子的核动力学涉及多个自由度,难以探索。在这里,作者使用飞秒 XUV 瞬态吸收光谱研究了 CHI 分子的核间距相关的耗散和键软化诱导的振动波包动力学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5951/5622070/a22837c785fd/41467_2017_848_Fig1_HTML.jpg

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