Publication | Closed Access
Proposal for precision determination of 7.8 eV isomeric state in<sup>229</sup>Th at heavy ion storage ring
18
Citations
16
References
2015
Year
EngineeringNuclear PhysicsAtomic Emission SpectroscopyEv Isomeric StateIon Beam InstrumentationChemistrySynchrotron Radiation SourceUltraviolet Optical TransitionPrecision DeterminationHeavy Ion PhysicIsomeric StateIon EmissionNuclear DecayIsomer StatePhysicsAtomic PhysicsQuantum ChemistrySynchrotron RadiationNatural SciencesSpectroscopyApplied Physics
The ultraviolet optical transition of the isomeric state in 229Th has attracted much attention recently due to its potential application to building an atomic/nuclear clock with ultra-high precision. However, the lowest nuclear excitation energy and the lifetime of the first excited state of 229Th were not measured directly and precisely until now, and how to precisely determine this isomer state of the 229Th is an urgent requirement. Here an experimental approach of using a technique similar to that of dielectronic recombination to measure the transition energy of the isomer state of 229Th at heavy ion storage rings is described. It is expected that the resonant transition can be found and determined with a precision better than several milli-eV.
| Year | Citations | |
|---|---|---|
Page 1
Page 1