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阿秒分子电离中离子相干性和超快电荷动力学的起始

Onset of ionic coherence and ultrafast charge dynamics in attosecond molecular ionisation.

作者信息

Ruberti M

机构信息

Department of Physics, Imperial College London, Prince Consort Road, London SW7 2AZ, UK.

出版信息

Phys Chem Chem Phys. 2019 Aug 28;21(32):17584-17604. doi: 10.1039/c9cp03074c. Epub 2019 Aug 2.

DOI:10.1039/c9cp03074c
PMID:31372608
Abstract

Here is presented a fully ab initio theoretical framework for simulating the correlated many-electron dynamics occurring during and emerging from molecular ionisation by attosecond laser pulses. This is based on the time-dependent (TD) version of the B-spline restricted correlation space (RCS)-algebraic diagrammatic construction (ADC) method, with the full description of the photoelectron and inclusion of electron correlation effects, such as shakeup processes and inter-channel couplings. The nature of the ultrafast charge dynamics in the molecular ion is elucidated by quantitatively predicting the degree of electronic coherence and eigenstate content of the prepared molecular cationic state, beyond the commonly used sudden approximation. The results presented here for the acetylene and ethylene molecules show that even in the high photon energy regime the simulated hole dynamics is quantitatively different from the prediction of the sudden approximation. Moreover, for high-bandwidth ionising pulse, the residual interaction between the cation, in highly-excited shake-up states, and the emitted slow photoelectron gives rise to a loss of coherence in the ionic system which can persist for the first few femtoseconds after ionisation.

摘要

本文提出了一个完全从头算的理论框架,用于模拟阿秒激光脉冲作用下分子电离过程中及电离后发生的多电子关联动力学。该框架基于B样条限制相关空间(RCS)-代数图示构造(ADC)方法的含时(TD)版本,对光电子进行了全面描述,并考虑了电子关联效应,如振激过程和通道间耦合。通过定量预测所制备分子阳离子态的电子相干程度和本征态含量,阐明了分子离子中超快电荷动力学的本质,超越了常用的突然近似。本文给出的乙炔和乙烯分子的结果表明,即使在高光子能量区域,模拟的空穴动力学在定量上也与突然近似的预测不同。此外,对于高带宽电离脉冲,处于高激发振激态的阳离子与发射出的慢光电子之间的残余相互作用会导致离子系统中的相干性损失,这种损失在电离后的最初几飞秒内可能持续存在。

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