Publication | Open Access
Observation of β-delayed two-proton emission in the decay of 22Si
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Citations
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References
2017
Year
Heavy Ion PhysicExperimental Nuclear PhysicsNuclear PhysicsPhysicsLightest NucleusNatural SciencesEngineeringParticle PhysicsApplied PhysicsNuclear TheoryHigh-energy Nuclear ReactionAtomic PhysicsTwo-proton Separation EnergyAccelerator Mass Spectrometryβ-Delayed Two-proton EmissionNuclear DecaySilicon Array
The decay of the lightest nucleus with Tz=−3, 22Si, was studied by a silicon array. A charged-particle group at 5600 (70) keV in the decay-energy spectrum was identified experimentally as β-delayed two-proton emission from the isobaric analog state (IAS) of 22Al. Experimental results of the IAS fed by a superallowed Fermi transition were compared with our large-scale shell-model calculations. The ground-state mass of 22Si was obtained indirectly in the experiment for the first time. Two-proton separation energy for 22Si is deduced to be −108 (125) keV, which indicates that it is a very marginal candidate for two-proton ground-state emission.
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