The electron affinity of cerium has been measured using laser photodetachment electron spectroscopy. The electron affinity of Ce(1G4) was determined to be 0.955 +/- 0.026 eV. The data also show that Ce- has at least two bound excited states with binding energies of 0.921 +/- 0.025 eV and 0.819 +/- 0.027 eV relative to the (1G4) ground state of the cerium atom. The present experimental measurements are compared to recent calculations of the energy levels of Ce-. Strong disagreement with the most recent theoretical atomic structure calculations highlights the complicated nature of this particular lanthanide
The initial investigation was to locate a suitable line. Optimum fuel to oxidant ratio, lamp current...
In this work we have performed Laser Photodetachment Threshold Spectroscopy (LPTS) to determine the...
Lanthanide-based materials have unusual electronic properties because of the high number of electron...
The electron affinity of cerium is determined from relativistic configuration interaction photodetac...
The negative ion of cerium is investigated experimentally with tunable infrared laser photodetachmen...
The negative ion of cerium is investigated using tunable laser photodetachment threshold spectroscop...
The negative ion of cerium is investigated experimentally with tunable infrared laser photodetachmen...
Previous magnetic, spectroscopic, and theoretical studies of cerocene, Ce(C8H8)2, have provided evid...
Electronic-energy-band calculation has been done by the Korringa-Kohn-Rostoker (KKR) method for ^...
The larger chemical shift of cerium compounds was discoveried. The chemical states of the cerium com...
The electronic band structure of f.c.c. phase of the rare earth metal cerium (α-cerium) has b...
In Ce compounds, strong resonant effects are observed in high energy photoemission spectra, both at ...
Of all the lanthanides. only cerium forms stable tetravalent compounds.The tetra(cyclopentadienyl) c...
The valence electronic structure and electron spectra of Cerium remain a subject of uncertainty and ...
The cerium valence in the CeM2 compounds, where M is magnesium, aluminum, iron, cobalt, nickel, ruth...
The initial investigation was to locate a suitable line. Optimum fuel to oxidant ratio, lamp current...
In this work we have performed Laser Photodetachment Threshold Spectroscopy (LPTS) to determine the...
Lanthanide-based materials have unusual electronic properties because of the high number of electron...
The electron affinity of cerium is determined from relativistic configuration interaction photodetac...
The negative ion of cerium is investigated experimentally with tunable infrared laser photodetachmen...
The negative ion of cerium is investigated using tunable laser photodetachment threshold spectroscop...
The negative ion of cerium is investigated experimentally with tunable infrared laser photodetachmen...
Previous magnetic, spectroscopic, and theoretical studies of cerocene, Ce(C8H8)2, have provided evid...
Electronic-energy-band calculation has been done by the Korringa-Kohn-Rostoker (KKR) method for ^...
The larger chemical shift of cerium compounds was discoveried. The chemical states of the cerium com...
The electronic band structure of f.c.c. phase of the rare earth metal cerium (α-cerium) has b...
In Ce compounds, strong resonant effects are observed in high energy photoemission spectra, both at ...
Of all the lanthanides. only cerium forms stable tetravalent compounds.The tetra(cyclopentadienyl) c...
The valence electronic structure and electron spectra of Cerium remain a subject of uncertainty and ...
The cerium valence in the CeM2 compounds, where M is magnesium, aluminum, iron, cobalt, nickel, ruth...
The initial investigation was to locate a suitable line. Optimum fuel to oxidant ratio, lamp current...
In this work we have performed Laser Photodetachment Threshold Spectroscopy (LPTS) to determine the...
Lanthanide-based materials have unusual electronic properties because of the high number of electron...