Ji M, Bernard J, Chen L, Brédy R, Ortéga C, Joblin C, Cassimi A, Martin S
Institut Lumière Matière, UMR 5306 Université Lyon 1-CNRS, Université de Lyon, 69622 Cedex Villeurbanne, France.
Université de Toulouse; UPS-OMP; IRAP; Toulouse, France.
J Chem Phys. 2017 Jan 28;146(4):044301. doi: 10.1063/1.4973651.
We report on a direct measurement of the Internal Energy Distribution (IED) shift rate of an initially hot polycyclic aromatic hydrocarbon (PAH) molecular ensemble, anthracene cations (CH). The ions were produced in an electron cyclotron resonance (ECR) ion source and stored in an electrostatic ion storage ring, the Mini-Ring. Laser pulses of two wavelengths were sent successively to merge the stored ion bunch at different storage times to enhance the neutral fragment yield due to fast laser induced dissociation. Using this technique, we have been able to determine directly the energy shift rate of the IED, without involving any theoretical simulation or any assumption on dissociation rates, cooling rates, or the initial IED. Theoretical energy shift rates have been estimated from the evolution of simulated IEDs by taking into account the effects of the unimolecular dissociation and two radiative decay mechanisms: the Poincaré fluorescence and the infrared vibrational emission. The comparison between the experimental results and the model provides new evidence of the important role of the Poincaré fluorescence in the overall cooling process of anthracene cations. Although in the short time range the commonly accepted intuition says that the cooling would result mostly from the dissociation of the hottest ions (depletion cooling), we demonstrate that the Poincaré fluorescence is the dominant contribution (about 85%) to the net cooling effect.
我们报告了对初始处于高温状态的多环芳烃(PAH)分子系综——蒽阳离子(CH)的内能分布(IED)漂移率的直接测量。这些离子在电子回旋共振(ECR)离子源中产生,并存储在一个静电离子存储环——微型环中。相继发送两个波长的激光脉冲,在不同存储时间合并存储的离子束,以提高由于快速激光诱导解离产生的中性碎片产率。使用这种技术,我们能够直接确定IED的能量漂移率,而无需涉及任何理论模拟或关于解离速率、冷却速率或初始IED的任何假设。通过考虑单分子解离和两种辐射衰变机制(庞加莱荧光和红外振动发射)的影响,从模拟IED的演化中估计了理论能量漂移率。实验结果与模型之间的比较为庞加莱荧光在蒽阳离子整体冷却过程中的重要作用提供了新的证据。尽管在短时间范围内,普遍接受的直觉认为冷却主要源于最热离子的解离(耗尽冷却),但我们证明庞加莱荧光对净冷却效应起主要作用(约85%)。