论文标题

瞬态谐振螺旋螺旋形 - 米特纳光谱的胸腺胺

Transient Resonant Auger-Meitner Spectra of Photoexcited Thymine

论文作者

Wolf, Thomas J. A., Paul, Alexander C., Folkestad, Sarai D., Myhre, Rolf H., Cryan, James P., Berrah, Nora, Bucksbaum, Phil H., Coriani, Sonia, Coslovich, Giacomo, Feifel, Raimund, Martinez, Todd J., Moeller, Stefan P., Mucke, Melanie, Obaid, Razib, Plekan, Oksana, Squibb, Richard J., Koch, Henrik, Gühr, Markus

论文摘要

我们使用核碱甲膜胺作为一个例子,提出了通过共振螺旋体 - 增强剂光谱(也称为谐振螺旋体光谱)对激发状态动力学的首次研究。胸骨在紫外线中得到光激发,并在氧气K边缘和下方用X射线光子能进行探测。在初始的光激发对ππ*激发态后,已知胸腺胺会经历内部转换为Nπ*激发态,并在氧气K-边缘处具有较强的共振,从胸腺氨酸的基态π*共振(请参阅我们先前的研究Wolf et al。,Nat。,Nat。我们解决并比较了与激发态和基态共振相关的螺旋钻-meitner电子光谱,并区分参与者和观众衰减贡献。此外,我们同时观察Nπ*状态签名的衰减,即在Nπ*状态和基态共振之间的光子能量上出现其他共振螺旋螺旋体 - 贡献器的贡献。我们根据振动热三重态在X射线吸收光谱中的模拟,通过在Picsecond Timecale上的Intersystem Crossing将这些贡献分配给从Nπ*状态到ππ*三重态的人口转移。此外,我们从最初激发的ππ*单元状态中确定了标志,我们在先前的研究中尚未观察到。

We present the first investigation of excited state dynamics by resonant Auger-Meitner spectroscopy (also known as resonant Auger spectroscopy) using the nucleobase thymine as an example. Thymine is photoexcited in the UV and probed with X-ray photon energies at and below the oxygen K-edge. After initial photoexcitation to a ππ* excited state, thymine is known to undergo internal conversion to an nπ* excited state with a strong resonance at the oxygen K-edge, red-shifted from the ground state π* resonances of thymine (see our previous study Wolf et al., Nat. Commun., 2017, 8, 29). We resolve and compare the Auger-Meitner electron spectra associated both with the excited state and ground state resonances, and distinguish participator and spectator decay contributions. Furthermore, we observe simultaneously with the decay of the nπ* state signatures the appearance of additional resonant Auger-Meitner contributions at photon energies between the nπ* state and the ground state resonances. We assign these contributions to population transfer from the nπ* state to a ππ* triplet state via intersystem crossing on the picosecond timescale based on simulations of the X-ray absorption spectra in the vibrationally hot triplet state. Moreover, we identify signatures from the initially excited ππ* singlet state which we have not observed in our previous study.

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