Decay of the 6.18-MeVLevel of
- 20 September 1969
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 185 (4) , 1242-1250
- https://doi.org/10.1103/physrev.185.1242
Abstract
The reaction (at MeV) has been used to investigate the decay of the 6.18-MeV level of . Both of the -ray transitions 6.18→5.96 and 6.18→3.37 have been observed by means of coincidence experiments using Ge(Li) and NaI(Tl) detectors. The mean life of the 6.18-MeV state is found to be psec from a Doppler-shift measurement on the 6.18→5.96 transition. It is concluded that the 6.18→5.96 transition takes place mainly to the component of the 5.96-MeV doublet and has an energy of 219.4±0.3 keV. The intensities of proton groups leading to levels of in the () reaction at MeV were determined with a Buechner spectrograph By combining the present results with previous measurements on the 6.18-MeV ground-state transition, the branching ratios (in%) from the 6.18-MeV state to the states at 5.96 MeV (), 3.37 MeV (), and 0 MeV () are found to be 4.6±1.5, 95±2, and 0.24±0.08, respectively. The significance of these results is discussed. Incidental results are a value of 169.25±0.04 keV for the 3.85→3.68 transition and a meanlife of 2.0±0.6 psec for the 2.15-MeV level.
Keywords
This publication has 26 references indexed in Scilit:
- Isobaric analogue states of 10Be-10BNuclear Physics A, 1969
- Lifetimes of Levels inNucleiPhysical Review B, 1968
- Structure ofPhysical Review Letters, 1968
- Study of Unbound Levels inN14by theC12(He3, pγ)N14ReactionPhysical Review B, 1967
- Even parity states of 16O and 17ONuclear Physics, 1966
- Determination of the Multipolarity of Nuclear Electromagnetic Transitions Using a Magnetic Pair SpectrometerPhysical Review B, 1964
- Magnetic Pair Spectrometer Studies of Electromagnetic Transitions inandPhysical Review B, 1963
- Nitrogen-14 and the Shell ModelPhysical Review B, 1963
- On the 5.16 MeV and 7.56 MeV states of B10Nuclear Physics, 1961
- Energy levels of light nuclei. VINuclear Physics, 1959