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共振激发、脉冲持续时间和强度对二价阴离子光电离成像的影响。

Effects of resonant excitation, pulse duration and intensity on photoelectron imaging of a dianion.

机构信息

Department of Chemistry, University of Durham, Durham DH1 3LE, UK.

出版信息

Phys Chem Chem Phys. 2014 Jan 14;16(2):489-96. doi: 10.1039/c3cp53235f.

Abstract

The photoelectron imaging of the indigo carmine dianion is used to demonstrate the effects of resonance excitation, pulse duration and pulse intensity on the photoelectron spectra and angular distributions of a dianion. Excitation of the S1 state leads to an aligned distribution of excited state dianions. The photoelectron angular distribution following subsequent photodetachment within a femtosecond laser pulse is primarily determined by the repulsive Coulomb barrier. Extending the timescale for photodetachment to nanoseconds leads to dramatic changes in both the spectral and angular distributions. These observations are explained in terms of statistical detachment of electrons, either from the monoanion, or from the ground state of the dianion following a number of photon cycles through the S1 ← S0 transition. At high intensity, new electron emission channels open up, leading to emission below the repulsive Coulomb barrier. This has been assigned to strong-field induced detachment and the effect of an electric field on the Coulomb barrier is discussed in terms of the photoelectron spectra and angular distributions.

摘要

靛蓝胭脂红二阴离子的光电子成像被用来演示共振激发、脉冲持续时间和脉冲强度对二阴离子的光电子能谱和角分布的影响。S1 态的激发导致激发态二阴离子的取向分布。在飞秒激光脉冲内随后的光离解后,光电子角分布主要由排斥库仑势垒决定。将光离解的时间尺度延长到纳秒级会导致光谱和角分布都发生剧烈变化。这些观察结果可以用电子的统计离解来解释,要么是从单阴离子,要么是从二阴离子的基态,在通过 S1 ← S0 跃迁的多个光子循环之后。在高强度下,新的电子发射通道打开,导致在排斥库仑势垒以下的发射。这归因于强场诱导的离解,并且讨论了电场对库仑势垒的影响,涉及光电子能谱和角分布。

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