Time-resolved photoelectron spectroscopy of non-adiabatic dynamics in polyatomic molecules
arXiv:1507.02204 · doi:10.1002/9780470259498.ch6
Abstract
This review article discusses advances in the use of time-resolved photoelectron spectroscopy for the study of non-adiabatic processes in molecules. A theoretical treatment of the experiments is presented together with a number of experimental examples.
84 pages, 33 figures
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Cited by in corpus (11)
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- Time-resolved inner-shell photoelectron spectroscopy: from a bound molecule to an isolated atom
- Monitoring the evolution of relative product populations at early times during a photochemical reaction
- Molecular Frame Photoelectron Angular Distributions in Polyatomic Molecules from Lab Frame Coherent Rotational Wavepacket Evolution
- General phenomenology of ionization from aligned molecular ensembles
- Ultrafast Molecular Frame Quantum Tomography
- A complex Gaussian approach to molecular photoionization
- On the molecular information revealed by photoelectron angular distributions of isotropic samples
- A Laboratory Frame Density Matrix for Ultrafast Quantum Molecular Dynamics
- Applying Bayesian Inference and deterministic anisotropy to retrieve the molecular structure distribution from gas-phase diffraction experiments