Steacie Institute for Molecular Sciences, National Research Council of Canada, Ottawa, Ontario, Canada.
Science. 2012 Mar 16;335(6074):1336-40. doi: 10.1126/science.1212896.
Subcycle strong-field ionization (SFI) underlies many emerging spectroscopic probes of atomic or molecular attosecond electronic dynamics. Extending methods such as attosecond high harmonic generation spectroscopy to complex polyatomic molecules requires an understanding of multielectronic excitations, already hinted at by theoretical modeling of experiments on atoms, diatomics, and triatomics. Here, we present a direct method which, independent of theory, experimentally probes the participation of multiple electronic continua in the SFI dynamics of polyatomic molecules. We use saturated (n-butane) and unsaturated (1,3-butadiene) linear hydrocarbons to show how subcycle SFI of polyatomics can be directly resolved into its distinct electronic-continuum channels by above-threshold ionization photoelectron spectroscopy. Our approach makes use of photoelectron-photofragment coincidences, suiting broad classes of polyatomic molecules.
亚周期强场电离 (SFI) 是许多新兴的原子或分子阿秒电子动力学光谱探针的基础。将诸如阿秒高次谐波产生光谱学等方法扩展到复杂的多原子分子,需要了解多电子激发,这已经通过对原子、双原子和三原子实验的理论建模暗示了这一点。在这里,我们提出了一种直接的方法,该方法独立于理论,通过实验探测多原子分子 SFI 动力学中多个电子连续统的参与。我们使用饱和(正丁烷)和不饱和(1,3-丁二烯)线性碳氢化合物来展示多原子的亚周期 SFI 如何通过阈上电离光电子能谱直接分解为其不同的电子连续统通道。我们的方法利用光电子-光碎片符合,适合广泛种类的多原子分子。