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通过光电子-离子符合技术研究 O 中的俄歇衰变。

Disentangling Auger decays in O by photoelectron-ion coincidences.

机构信息

School of Physics and Nuclear Energy Engineering, Beihang University, Beijing, 100191, China.

Synchrotron SOLEIL, l'Orme des Merisiers, Saint-Aubin, BP 48, 91192, Gif-sur-Yvette Cedex, France.

出版信息

Sci Rep. 2017 Jun 6;7(1):2898. doi: 10.1038/s41598-017-02875-x.

Abstract

In non-resonant Auger electron spectroscopies, multi core-ionized states lead to numerous energetically close-lying electronic transitions in Auger spectra, this hampering the assignment and interpretation of the experimental results. Here we reveal a new method to overcome this intrinsic limitation of non-resonant inner-shell spectroscopies. In a proof-of-principle experiment performed for the O molecule, most of the Auger final states are dissociative, and we measure in coincidence the kinetic energy of the photoelectron and the kinetic energy release of the (O, O) ion pairs produced after the Auger decay of the O 1s core-ionized states. The Auger final states are assigned using energy conservation. We fully separate the contributions from the Σ and Σ intermediate ionic states and conclusively demonstrate that the Auger decay probability can dramatically depend on the different O 1s intermediate multiplet states. In addition, a metastable Auger final state also exists, with lifetime longer than 3.8 μs, and clear changes are observed in both branching ratio and spectral profile of the O 1s photoelectron spectrum when they are recorded in coincidence with either [Formula: see text] or with other ionic species. These changes are attributed to the population of the metastable [Formula: see text] Auger final state via different intermediate states.

摘要

在非共振俄歇电子能谱学中,多核离化态导致俄歇谱中存在许多能量接近的电子跃迁,这给实验结果的归属和解释带来了困难。在这里,我们揭示了一种克服非共振内壳层光谱学固有局限性的新方法。在对 O 分子进行的原理验证实验中,大多数俄歇终态是离解的,我们在符合测量中同时测量光电子的动能和在 O 1s 芯离子化态俄歇衰减后产生的(O,O)离子对的动能释放。俄歇终态是通过能量守恒来分配的。我们完全分离了Σ和Σ中间离子态的贡献,并最终证明俄歇衰减概率可以显著取决于不同的 O 1s 中间多重态。此外,还存在一个亚稳态俄歇终态,其寿命长于 3.8 μs,当以[Formula: see text]或其他离子物种进行符合测量时,O 1s 光电子谱的分支比和谱线轮廓都发生了明显的变化。这些变化归因于通过不同的中间态使亚稳态[Formula: see text]俄歇终态的布居。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a01b/5460142/bbdadb18728b/41598_2017_2875_Fig1_HTML.jpg

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