首页> 外文期刊>Journal of physical chemistry letters >Two-Photon Excited State Dynamics of Dark Valence, Rydberg, and Superexcited States in 1,3-Butadiene
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Two-Photon Excited State Dynamics of Dark Valence, Rydberg, and Superexcited States in 1,3-Butadiene

机译:1,3-丁二烯中暗价,里德堡和超激发态的双光子激发态动力学

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Two-photon absorption in systems with parity permits access to states that cannot be prepared by one-photon absorption. Here we present the first time-resolved photoelectron spectroscopy study using this technique, applied to 1,3-butadiene, in which we investigated the dynamics of its dark valence, Rydberg, and superexcited states. The dark valence state dynamics are accessed via the Rydberg manifold, excited by two photons of 400 nm. We find that the ‘dark’ 2~1 A_g state populated in this manner has a much longer lifetime than when accesses via the 1~1 B_u ‘bright’ valence state when populated by one photon of 200 nm. In addition, we compared the dynamics of the 3sπ- and 3dπ-Rydberg states. These Rydberg states relax to the valence manifold on a subpicosecond time scale, with the 3sπ-Rydberg state decay rate being larger due to a stronger valence-Rydberg mixing. Finally, we investigated superexcited valence states that fragment or autoionize within 200 fs, likely without involving Rydberg states.
机译:具有奇偶校验的系统中的双光子吸收允许访问无法通过单光子吸收准备的状态。在这里,我们介绍了使用此技术的第一时间分辨光电子能谱研究,该技术应用于1,3-丁二烯,在其中我们研究了其暗价,里德堡和超激发态的动力学。暗价态动力学通过Rydberg流形访问,并由两个400 nm光子激发。我们发现,以这种方式填充的“暗” 2〜1 A_g状态的寿命比通过1〜1 B_u的“亮”价态访问时(由一个200 nm的光子填充)的寿命更长。此外,我们比较了3sπ-和3dπ-Rydberg态的动力学。这些里德堡态在亚皮秒级的时间尺度上弛豫到化合价态,由于更强的化合价-里德堡混合,3sπ-里德堡态衰减率更大。最后,我们研究了可能在不涉及Rydberg态的情况下在200 fs内断裂或自电离的超激发价态。

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