Time-resolved photoelectron spectroscopy of wavepackets through a conical intersection in NO2
We report the results of theoretical studies of the time-resolved femtosecond photoelectron spectroscopy of quantum wavepackets through the conical intersection between the first two (2)A' states of NO(2). The Hamiltonian explicitly includes the pump-pulse interaction, the nonadiabatic coupling...
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Veröffentlicht in: | The Journal of chemical physics 2010-03, Vol.132 (12), p.124307-124307 |
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creator | Arasaki, Yasuki Takatsuka, Kazuo Wang, Kwanghsi McKoy, Vincent |
description | We report the results of theoretical studies of the time-resolved femtosecond photoelectron spectroscopy of quantum wavepackets through the conical intersection between the first two (2)A' states of NO(2). The Hamiltonian explicitly includes the pump-pulse interaction, the nonadiabatic coupling due to the conical intersection between the neutral states, and the probe interaction between the neutral states and discretized photoelectron continua. Geometry- and energy-dependent photoionization matrix elements are explicitly incorporated in these studies. Photoelectron angular distributions are seen to provide a clearer picture of the ionization channels and underlying wavepacket dynamics around the conical intersection than energy-resolved spectra. Time-resolved photoelectron velocity map images are also presented. |
doi_str_mv | 10.1063/1.3369647 |
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title | Time-resolved photoelectron spectroscopy of wavepackets through a conical intersection in NO2 |
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