Publication | Closed Access
Spectroscopic study of lithiumlike carbon by dielectronic recombination of a stored ion beam
41
Citations
25
References
1997
Year
EngineeringComputational ChemistryElectronic StructureSpectra-structure CorrelationDielectronic RecombinationNuclear Quadrupole ResonanceIon BeamIon EmissionMaterials SciencePhysicsAtomic PhysicsEnergy StoragePhysical ChemistryStored Ion BeamQuantum ChemistryLithiumlike CarbonMicrowave SpectroscopyLi-ion Battery MaterialsNatural SciencesApplied PhysicsCondensed Matter PhysicsIon Storage RingResonant States
A detailed spectroscopic study of resonant states in the continuum of lithiumlike carbon has been performed utilizing dielectronic recombination at an ion storage ring. All observed resonances have been identified and energies have been determined with an accuracy better than 0.1 eV. The measurements have been complemented by accurate calculations using the saddle-point technique. Every resonance of the type ${1\mathrm{s}\mathrm{n}\mathrm{l}\mathrm{n}}^{|\mathrm{I}\mathrm{H}}$${\mathrm{l}}^{|\mathrm{I}\mathrm{H}}$ has been determined for n=2, ${\mathrm{n}}^{|\mathrm{I}\mathrm{H}}$=2,3).
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