Hishikawa Akiyoshi, Matsuda Akitaka, Fushitani Mizuho, Takahashi Eiji J
Institute for Molecular Science, National Institutes of Natural Sciences, Myodaiji, Okazaki, Aichi 444-8585, Japan.
Phys Rev Lett. 2007 Dec 21;99(25):258302. doi: 10.1103/PhysRevLett.99.258302.
We demonstrate the visualization of ultrafast hydrogen migration in deuterated acetylene dication (C2D2{2+}) by employing the pump-probe Coulomb explosion imaging with sub-10-fs intense laser pulses (9 fs, 0.13 PW/cm{2}, 800 nm). It is shown, from the temporal evolution of the momenta of the fragment ions produced by the three-body explosion, C2D2{3+}-->D{+} + C{+} + CD{+}, that the migration proceeds in a recurrent manner: the deuterium atom first shifts from one carbon site to the other in a short time scale (approximately 90 fs) and then migrates back to the original carbon site by 280 fs, in competition with the molecular dissociation.
我们通过使用亚10飞秒强激光脉冲(9飞秒,0.13 PW/cm²,800纳米)的泵浦-探测库仑爆炸成像技术,展示了氘代乙炔二价阳离子(C2D2{2+})中超快氢迁移的可视化。从三体爆炸产生的碎片离子动量的时间演化,即C2D2{3+}-->D{+} + C{+} + CD{+},可以看出,迁移以循环方式进行:氘原子首先在短时间尺度(约90飞秒)内从一个碳位点转移到另一个碳位点,然后在280飞秒时迁移回原始碳位点,同时与分子解离相互竞争。