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飞秒激光烧蚀固态C60后观察到的波长依赖性碎裂和聚集

Wavelength-dependent fragmentation and clustering observed after femtosecond laser ablation of solid C60.

作者信息

Kobayashi T, Kato T, Matsuo Y, Kurata-Nishimura M, Hayashizaki Y, Kawai J

机构信息

RIKEN Discovery Research Institute, 2-1 Hirosawa, Wako, Saitama 351-0198, Japan.

出版信息

J Chem Phys. 2007 Sep 21;127(11):111101. doi: 10.1063/1.2772243.

Abstract

We report here the resonance effect in femtosecond laser ablation of solid C60 by investigating wavelength and fluence dependence of product ion species. When the ablation laser wavelength is far from the molecular absorption band of C60, we observe both C60-2n+ fragment ions and C60+2n+ cluster ions as well as C60+ parent ion. Delayed ionization of C60 is not significant. When the ablation laser wavelength is near resonant with the molecular absorption, we observe C60+ and some amount of C60-2n+ fragment ions depending on the laser fluence. Delayed ionization of C60 is significant in this case, which indicates high internal energy of C60 molecule. From the observations, we confirm the strong coupling of femtosecond laser energy with C60 molecule when the molecular absorption is high at the ablation laser wavelength.

摘要

我们通过研究产物离子种类的波长和能量密度依赖性,在此报告了飞秒激光烧蚀固体C60中的共振效应。当烧蚀激光波长远离C60的分子吸收带时,我们观察到C60 - 2n +碎片离子、C60 + 2n +簇离子以及C60 +母离子。C60的延迟电离并不显著。当烧蚀激光波长与分子吸收接近共振时,我们观察到C60 +以及一定量的C60 - 2n +碎片离子,这取决于激光能量密度。在这种情况下,C60的延迟电离很显著,这表明C60分子具有较高的内能。从这些观察结果中,我们证实了当烧蚀激光波长处分子吸收较高时,飞秒激光能量与C60分子之间存在强耦合。

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