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Excited-state dynamics, time-resolved photoelectron spectroscopy

We turn now to a more detailed description of the photoionization probe step in order to clarify the ideas presented above. Time-resolved photoelectron spectroscopy probes the excited-state dynamics using a time-delayed probe laser pulse that brings about ionization of the excited-state wave packet, usually with a single photon... [Pg.511]

Another approach of great importance for studies of excited state dynamics is sub-picosecond time resolved spectroscopy. A number of authors have reported femtosecond pump-probe measurements of excited state lifetimes in A, C, T, and G [13-16] and base pair mimics [17]. Schultz et al. have reported time resolved photoelectron spectroscopy and electron-ion coincidence of base pair mimics [18]. these studies can also be compared with similar measurements in solution [19-24], While time resolved measurements provide direct lifetime data, they do have the limitation that the inherent bandwidth reduces the spectral resolution, required for selecting specific electronic states and for selecting single isomers, such as cluster structure and tautomeric form. [Pg.326]

Electron dynamics of photoionization states in the course of nonadiabatic transition is one of the important molecular processes. It can be applied to the studies on the following dynamical processes Tracking the history of electronic and vibrational states wandering among the excited states in laser fields with designed optical pulses. These time-dependent transient states should be able to be monitored in terms of time-resolved photoelectron spectroscopy [14, 353]. Inner shell ionization from a deep core level and the concomitant electronic state avalanches (decay) towards the hole, which may be accompanied by autoionization, is also quite interesting. In a... [Pg.393]

In order to study the viscosity effect on the quenching of triplet excited state of (53) by TEMPO, chemically induced dynamic electron polarization and transient absorption spectra have been measured in ethylene glycol, 1,2-propanol and their mixtures. The results indicate that the quenching rate constant is viscosity-dependent and decreases linearly with the increase in solvent viscosity. The spectroscopy and dynamics of near-threshold excited states of the isolated chloranil radical anion have been studied using photoelectron imaging taken at 480 nm, which clearly indicates resonance-enhanced photodetachment via a bound electronic excited state. Time-resolved photoelectron imaging reveals that the excited state rapidly decays on a timescale of 130 fs via internal conversion. ... [Pg.160]

To investigate possible detection of the history of sequential transitions between electronic states by a pulse train with time-resolved femtosecond photoelectron spectroscopy, we compute the quantum wavepacket dynamics of the LiH system. The LiH system is suited for our purpose of studying time evolution of electronic interaction in that (1) the lowest excited state... [Pg.169]


See other pages where Excited-state dynamics, time-resolved photoelectron spectroscopy is mentioned: [Pg.499]    [Pg.182]    [Pg.128]    [Pg.306]    [Pg.500]    [Pg.339]    [Pg.129]    [Pg.201]    [Pg.243]    [Pg.245]    [Pg.246]   
See also in sourсe #XX -- [ Pg.511 , Pg.512 , Pg.513 , Pg.514 , Pg.515 , Pg.516 , Pg.517 , Pg.518 , Pg.519 , Pg.520 , Pg.521 , Pg.522 , Pg.523 , Pg.524 , Pg.525 ]




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7-resolved spectroscopy

Dynamic spectroscopy

Excitable dynamics

Excitation Spectroscopy

Excited states spectroscopy

Excited-state dynamics

Excited-state dynamics, time-resolved

Photoelectron spectroscopy states

State dynamical

Time resolved spectroscopy

Time spectroscopy

Time-resolved photoelectron

Time-resolved spectroscopies spectroscopy

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