Li Wen, Zhou Xibin, Lock Robynne, Patchkovskii Serguei, Stolow Albert, Kapteyn Henry C, Murnane Margaret M
JILA and Department of Physics, University of Colorado and National Institute of Standards and Technology, Boulder, CO 80309-0440, USA.
Science. 2008 Nov 21;322(5905):1207-11. doi: 10.1126/science.1163077. Epub 2008 Oct 30.
The attosecond time-scale electron-recollision process that underlies high harmonic generation has uncovered extremely rapid electronic dynamics in atoms and diatomics. We showed that high harmonic generation can reveal coupled electronic and nuclear dynamics in polyatomic molecules. By exciting large amplitude vibrations in dinitrogen tetraoxide, we showed that tunnel ionization accesses the ground state of the ion at the outer turning point of the vibration but populates the first excited state at the inner turning point. This state-switching mechanism is manifested as bursts of high harmonic light that is emitted mostly at the outer turning point. Theoretical calculations attribute the large modulation to suppressed emission from the first excited state of the ion. More broadly, these results show that high harmonic generation and strong-field ionization in polyatomic molecules undergoing bonding or configurational changes involve the participation of multiple molecular orbitals.
作为高次谐波产生基础的阿秒时间尺度电子再碰撞过程,揭示了原子和双原子分子中极其快速的电子动力学。我们表明,高次谐波产生能够揭示多原子分子中耦合的电子和核动力学。通过激发四氧化二氮中的大幅振动,我们发现隧道电离在振动的外转折点处使离子进入基态,但在振动的内转折点处使离子填充到第一激发态。这种态切换机制表现为主要在外转折点处发射的高次谐波光脉冲。理论计算将这种大幅调制归因于离子第一激发态发射的抑制。更广泛地说,这些结果表明,在经历键合或构型变化的多原子分子中,高次谐波产生和强场电离涉及多个分子轨道的参与。