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Single-photon double and triple ionization of acetaldehyde (ethanal) studied by multi-electron coincidence spectroscopy

机译:多电子符合光谱法研究乙醛(乙烷)的单光子双电离和三电离

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摘要

Single-photon multiple ionization processes of acetaldehyde (ethanal) have been experimentally investigated by utilizing a multi-particle coincidence technique based on the time-of-flight magnetic bottle principle, in combination with either a synchrotron radiation source or a pulsed helium discharge lamp. The processes investigated include double and triple ionization in the valence region as well as single and double Auger decay of core-ionized acetaldehyde. The latter are studied site-selectively for chemically different carbon core vacancies, scrutinizing early theoretical predictions specifically made for the case of acetaldehyde. Moreover, Auger processes in shake-up and core-valence ionized states are investigated. In the cases where the processes involve simultaneous emission of two electrons, the distributions of the energy sharing are presented, emphasizing either the knock-out or shake-off mechanism.
机译:乙醛(乙醛)的单光子多次电离过程已通过基于飞行时间磁瓶原理的多粒子符合技术,与同步辐射源或脉冲氦放电灯结合,进行了实验研究。研究的过程包括化合价区域的两次和三次电离以及核心电离的乙醛的一次和两次俄歇衰变。针对化学上不同的碳核空位对后者进行了位点选择性研究,仔细研究了针对乙醛情况的早期理论预测。此外,还研究了振动和中心价电离态的俄歇过程。在这些过程涉及同时发射两个电子的情况下,将显示能量共享的分布,强调了敲除或甩离机制。

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