Kang Do Hyung, Kim Jinwoo, Cheng Min, Kim Sang Kyu
Department of Chemistry, KAIST, Daejeon 34141, Republic of Korea.
Beijing National Laboratory for Molecular Sciences, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.
J Phys Chem Lett. 2021 Feb 25;12(7):1947-1954. doi: 10.1021/acs.jpclett.1c00169. Epub 2021 Feb 16.
The autodetachment dynamics of vibrational Feshbach resonances of the quadrupole-bound state (QBS) for the first time has been investigated in real time for the first excited state of the 4-cyanophenoxide (4-CP) anion. Individual vibrational resonances of the cryogenically cooled 4-CP QBS have been unambiguously identified, and their autodetachment rates state-specifically measured using the picosecond time-resolved pump-probe technique employing the photoelectron velocity-map imaging method. The autodetachment lifetime (τ) is found to be strongly dependent on mode, giving τ values of ∼56, ∼27, and ≤2.8 ps for the 12' ( = 406 cm), 12' ( = 806 cm), and 21' ( = 220 cm) modes, respectively. The striking mode-specific behavior of the QBS lifetime has been invoked by the physical model in which the loosely bound electron falls off by the dynamic wobbling of the three-dimensional quadrupole moment ellipsoid associated with the corresponding vibrational motion in the autodetachment process.
首次实时研究了4-氰基苯氧基(4-CP)阴离子第一激发态的四极束缚态(QBS)振动费什巴赫共振的自脱离动力学。明确识别了低温冷却的4-CP QBS的各个振动共振,并使用采用光电子速度映射成像方法的皮秒时间分辨泵浦-探测技术,针对特定状态测量了它们的自脱离速率。发现自脱离寿命(τ)强烈依赖于模式,对于12'(=406 cm)、12'(=806 cm)和21'(=220 cm)模式,τ值分别约为56、27和≤2.8 ps。QBS寿命显著的模式特异性行为已由物理模型解释,在该模型中,在自脱离过程中,与相应振动运动相关的三维四极矩椭球的动态摆动使松散束缚的电子脱落。