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Imaging alignment of rotational state-selected CH3I molecule

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【作者】 宋乐乐王艳辉王晓春孙洪涛赫兰海罗嗣佐胡文惠李东旭朱文会孙亚楠丁大军刘福春

【Author】 Le-Le Song;Yan-Hui Wang;Xiao-Chun Wang;Hong-Tao Sun;Lan-Hai He;Si-Zuo Luo;Wen-Hui Hu;Dong-Xu Li;Wen-Hui Zhu;Ya-Nan Sun;Da-Jun Ding;Fu-Chun Liu;Institute of Atomic and Molecular Physics, Jilin University;Jilin Institute of Chemical Technology;Jilin Provincial Key Laboratory of Applied Atomic and Molecular Spectroscopy, Jilin University;College of Electronic Science and Engineering, State Key Laboratory on Integrated Optoelectronics, Jilin University;General Hospital of FAW;

【通讯作者】 刘福春;

【机构】 Institute of Atomic and Molecular Physics, Jilin UniversityJilin Institute of Chemical TechnologyJilin Provincial Key Laboratory of Applied Atomic and Molecular Spectroscopy, Jilin UniversityCollege of Electronic Science and Engineering, State Key Laboratory on Integrated Optoelectronics, Jilin UniversityGeneral Hospital of FAW

【摘要】 We experimentally and numerically investigate CH3I molecular alignment by using a femtosecond laser and a hexapole. The hexapole provides the single |111〉rotational state condition at 4.5-kV hexapole rod voltage. Based on this single rotational state, an enhanced alignment degree of 0.73 is achieved. Our experimental results are in agreement with the simulation results. We experimentally obtain the ion velocity map images and show the influence of the initial rotational-state population. With the I+ion images and angular distributions at different pump-probe delay time, the alignment and anti-alignment phenomena are further demonstrated. The molecules will be under field-free conditions when the laser effect disappears completely at the full revival time. Our work shows that the quantum control and spatial control on CH3I molecules can be realized and molecular coordinate frame can be obtained for further molecular experiment.

【Abstract】 We experimentally and numerically investigate CH3I molecular alignment by using a femtosecond laser and a hexapole. The hexapole provides the single |111〉rotational state condition at 4.5-kV hexapole rod voltage. Based on this single rotational state, an enhanced alignment degree of 0.73 is achieved. Our experimental results are in agreement with the simulation results. We experimentally obtain the ion velocity map images and show the influence of the initial rotational-state population. With the I+ion images and angular distributions at different pump-probe delay time, the alignment and anti-alignment phenomena are further demonstrated. The molecules will be under field-free conditions when the laser effect disappears completely at the full revival time. Our work shows that the quantum control and spatial control on CH3I molecules can be realized and molecular coordinate frame can be obtained for further molecular experiment.

【基金】 Project supported by the National Natural Science Foundation of China(Grant Nos.11574116,11534004,10704028,and 11474123);the Natural Science Foundation of Jilin Province,China(Grant No.20170101154JC)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2019年02期
  • 【分类号】O623.21
  • 【下载频次】20
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