Delayed fragmentation of methane induced by femtosecond laser pulses
Abstract
We experimentally investigated the delayed fragmentation process of methane (CH4) molecules in a strong linearly polarized femtosecond laser field by cold target recoil-ion momentum spectroscopy. The prompt fragmentation and delayed fragmentation processes of the CH42+→H++CH3+ channel were unambiguously identified in the coincident photoion–photoion time-of-flight spectrum. By solving Newton’s equations, the survival times of long-lived methane dications have been obtained, with a corresponding statistical lifetime of 304 ± 9 ns. The branching ratios have also been evaluated, with the relative yield of delayed fragmentation being much lower than that of prompt fragmentation. Momentum distributions and kinetic energy release spectra have been obtained for both prompt and delayed processes. The possible formation mechanism of delayed fragmentation was also discussed.
Article Details
Journal Info
The Journal of Chemical Physics
American Institute of Physics
Authors (5)
Mingjie Zhang
Greater Bay Biomedical Innocenter, Shenzhen Bay Laboratory
Wenbin Jiang
Department of Materials Science and Engineering
Shuai Zhang
Xincheng Wang
Center for Transformative Science and School of Physical Science and Technology, ShanghaiTech University 3 , Shanghai 201210,
Yuhai Jiang
Shanghai Advanced Research Institute, Chinese Academy of Sciences 1 , Shanghai 201210,