Physical Review · 1956 · 28 citations · 4 references
Experimental Nuclear PhysicsNuclear PhysicsPhysicsMagnetic LensAnnihilation RadiationNuclear DataParticle Physics7.1-Hour Selenium-73 ActivityNatural SciencesEngineeringSynthetic ElementDeoxygenationHigh-energy Cosmic RayHigh-energy Nuclear Reaction
The radiations from the 7.1-hour selenium-73 activity have been investigated using magnetic lens, scintillation pulse-height, and coincidence counting techniques. Two gamma rays of 65.8- and 359-kev energy and of nearly equal intensity are observed to be in prompt coincidence with each other and in delayed coincidence with annihilation radiation resulting from the positron decay of the selenium-73 parent. Energy and intensity measurements indicate that a main group (${E}_{max}=1.29$ Mev, $logft=5.3$) excites the gamma-ray cascade, while a weaker group (${E}_{max}=1.65$ Mev, $log\mathrm{ft}\ensuremath{\le}8.0$) excites the 65.8-kev transition only. These data coupled with internal conversion information lead to a level scheme in ${\mathrm{As}}^{73}$ as follows: ground level, ${p}_{\frac{3}{2}}$; 65.8-kev level, ${f}_{\frac{5}{2}}$; and 425-kev level, ${g}_{\frac{9}{2}}$, ${\ensuremath{\tau}}_{\frac{1}{2}}=6$ \ensuremath{\mu}sec. The 7.1-hour level in ${\mathrm{Se}}^{73}$ is in a ${g}_{\frac{9}{2}}$ state.
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W. F. G. Swann · Journal of the Franklin Institute · 1953 · 2.9K citations · Full text
Tables of Nuclear Shell Structure
P.F.A. Klinkenberg · Reviews of Modern Physics · 1952 · 211 citations