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强飞秒激光脉冲对氧和氮的场致取向

Field-induced alignment of oxygen and nitrogen by intense femtosecond laser pulses.

作者信息

Huang Juan, Wu Chengyin, Xu Nan, Liang Qingqing, Wu Zhifeng, Yang Hong, Gong Qihuang

机构信息

State Key Laboratory for Mesoscopic Physics, Department of Physics, Peking University, Beijing 100871, People's Republic of China.

出版信息

J Phys Chem A. 2006 Aug 31;110(34):10179-84. doi: 10.1021/jp062391v.

Abstract

Field-induced alignment of O2 and N2 was experimentally studied with laser intensities varying from 10(13) to 10(15) W/cm2. When the laser intensity was below the ionization threshold for these molecules, the interaction between the induced dipole moment of molecules and the laser electric field aligned the molecules along the laser polarization direction. After extinction of the exciting laser, the transient alignment revived periodically. Thus macroscopic ensembles of highly aligned O2 and N2 molecules were obtained under field-free conditions. When the laser intensity exceeded the ionization threshold for these molecules, multielectron ionization and Coulomb explosion occurred. Using two linearly polarized laser pulses with crossed polarization, we demonstrated that the rising edge of the laser pulse aligned the molecules along the laser polarization direction prior to ionization, which resulted in strong anisotropic angular distributions of exploding fragments. These results suggest that the degree of alignment should be taken into account when qualitatively comparing the ion yield of these molecules with their companion atoms.

摘要

利用强度在10(13)至10(15)W/cm2之间变化的激光,对O2和N2的场致取向进行了实验研究。当激光强度低于这些分子的电离阈值时,分子的感应偶极矩与激光电场之间的相互作用使分子沿激光偏振方向取向。激发激光熄灭后,瞬态取向会周期性恢复。因此,在无场条件下获得了高度取向的O2和N2分子的宏观系综。当激光强度超过这些分子的电离阈值时,会发生多电子电离和库仑爆炸。使用两个具有交叉偏振的线偏振激光脉冲,我们证明了激光脉冲的上升沿在电离之前使分子沿激光偏振方向取向,这导致了爆炸碎片的强烈各向异性角分布。这些结果表明,在定性比较这些分子与其伴生原子的离子产率时,应考虑取向程度。

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