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- W1981974797 abstract "Photoelectron imaging has broadened the scope of traditional photoelectron spectroscopy by combining a simultaneous photoelectron angular distribution, PAD, measurement with kinetic energy analysis. A fundamental understanding of PADs has been largely limited to simple atomic systems. However, a new model has recently been developed that predicts PADs as a function of electron kinetic energy for a simple linear combination of s and p atomic orbitals. We used CH− to test this model by acquiring PADs in a photoelectron imaging spectrometer at wavelengths from 600 to 355 nm. The PADs for electron detachment from the HOMO (1π) of CH− fit model predictions. However, the PADs associated with detachment from the HOMO-1 (3σ) orbital exhibit anomalous behavior at low electron kinetic energies because of a resonant process that arises from a previously undetected excited state of CH−." @default.
- W1981974797 created "2016-06-24" @default.
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- W1981974797 date "2013-05-28" @default.
- W1981974797 modified "2023-09-27" @default.
- W1981974797 title "Communication: Photoelectron angular distributions of CH− reveal a temporary anion state" @default.
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- W1981974797 doi "https://doi.org/10.1063/1.4808045" @default.
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