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在相同有效电离强度下比较1.4微米飞秒激光脉冲偏振对萘分子离子形成和碎裂的影响。

Effects of polarization of 1.4 microm femtosecond laser pulses on the formation and fragmentation of naphthalene molecular ions compared at the same effective ionization intensity.

作者信息

Yatsuhashi Tomoyuki, Nakashima Nobuaki

机构信息

Department of Chemistry, Graduate School of Science, Osaka City University, 3-3-138 Sugimoto, Sumiyoshi, Osaka 558-8585, Japan.

出版信息

J Phys Chem A. 2005 Oct 27;109(42):9414-8. doi: 10.1021/jp053868q.

Abstract

Naphthalene was ionized with 130 fs pulses of different polarizations at 1.4 microm. In contrast to the results of ionization by 0.8 microm pulses, fragmentation was dramatically suppressed and naphthalene molecular ions of up to 3+ were produced. The use of this simple model of ionization and large electron kinetic energy enabled us to study the electron-recollision-induced fragmentation and/or double ionization more precisely. The failure of the theoretical prediction of ion yield for the case of naphthalene prevented us from judging the electron recollision solely by a comparison with theoretical curves. Therefore, the effects of laser polarization on the ratios between differently charged states and between molecular and total ions were compared at the same effective (peak) intensity instead of average intensity. Comparison under the same effective intensity enabled us to identify the effects of ellipticity clearly. Evidence of the electron recollision was found in the doubly charged molecular ion formation but not in the fragmentation. The single-electron recollision event was not sufficient to induce fragmentation because of its low energy transfer efficiency. We concluded that the fragmentation originated in the unstable nature of the highly charged molecular ion itself and in the Coulomb explosion in the case of naphthalene.

摘要

萘在1.4微米波长下用不同偏振的130飞秒脉冲进行电离。与0.8微米脉冲电离的结果相反,碎片化显著受到抑制,产生了高达3 +的萘分子离子。使用这种简单的电离模型和较大的电子动能,使我们能够更精确地研究电子重碰撞诱导的碎片化和/或双电离。萘情况下离子产率的理论预测失败,使我们无法仅通过与理论曲线比较来判断电子重碰撞。因此,在相同的有效(峰值)强度而非平均强度下,比较了激光偏振对不同电荷态之间以及分子离子与总离子之间比率的影响。在相同有效强度下进行比较,使我们能够清楚地识别椭圆率的影响。在双电荷分子离子形成中发现了电子重碰撞的证据,但在碎片化中未发现。单电子重碰撞事件由于其低能量转移效率,不足以诱导碎片化。我们得出结论,碎片化源于高电荷分子离子本身的不稳定性质以及萘情况下的库仑爆炸。

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