Photoselection and the structure of highly excited states: Rotationally resolved spin–orbit autoionization spectrum of HCl
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.459765
Reference36 articles.
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5. Electronic spectra and structure of the hydrogen halides: Characterization of the electronic structure of HCl lying between 82 900 and 93 500 cm−1 above X1Σ+
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1. Probing the coupling of a dipole-bound electron with a molecular core;Chemical Science;2019
2. Threshold photoelectron spectroscopy of HCl and DCl;Chemical Physics;1998-11
3. Characterization of spin–orbit autoionizing Rydberg states excited via one‐photon absorption from the F 1Δ2 Rydberg state of HBr;The Journal of Chemical Physics;1996-08-22
4. Zero kinetic energy‐pulsed field ionization and resonance enhanced multiphoton ionization photoelectron spectroscopy: Ionization dynamics of Rydberg states in HBr;The Journal of Chemical Physics;1996-04
5. Evidence for a Molecule-Rotation-Dependent Spin Polarization Transfer Mechanism in the Photon-Induced Autoionization of HCl and DCl;Physical Review Letters;1995-10-16
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