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Superallowed Gamow-Teller Decay of the Doubly Magic Nucleus 100Sn

Abstract

The shell structure of atomic nuclei is associated with 'magic numbers' and originates in the nearly independent motion of neutrons and protons in a mean potential generated by all nucleons. During β(+)-decay, a proton transforms into a neutron in a previously not fully occupied orbital, emitting a positron-neutrino pair with either parallel or antiparallel spins, in a Gamow-Teller or Fermi transition, respectively. The transition probability, or strength, of a Gamow-Teller transition depends sensitively on the underlying shell structure and is usually distributed among many states in the neighbouring nucleus. Here we report measurements of the half-life and decay energy for the decay of (100)Sn, the heaviest doubly magic nucleus with equal numbers of protons and neutrons. In the β-decay of (100)Sn, a large fraction of the strength is observable because of the large decay energy. We determine the largest Gamow-Teller strength so far measured in allowed nuclear β-decay, establishing the 'superallowed' nature of this Gamow-Teller transition. The large strength and the low-energy states in the daughter nucleus, (100)In, are well reproduced by modern, large-scale shell model calculations.

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References
1.
Hamamoto I , Sagawa . Gamow-Teller beta decay and isospin impurity in nuclei near the proton drip line. Phys Rev C Nucl Phys. 1993; 48(3):R960-R963. DOI: 10.1103/physrevc.48.r960. View

2.
Cederwall B, Moradi F, Back T, Johnson A, Blomqvist J, Clement E . Evidence for a spin-aligned neutron-proton paired phase from the level structure of (92)Pd. Nature. 2010; 469(7328):68-71. DOI: 10.1038/nature09644. View

3.
CHARTIER , AUGER , Mittig , Fifield , Casandjian , CHABERT . Mass Measurement of 100Sn. Phys Rev Lett. 1996; 77(12):2400-2403. DOI: 10.1103/PhysRevLett.77.2400. View

4.
Brown , Rykaczewski . Gamow-Teller strength in the region of 100Sn. Phys Rev C Nucl Phys. 1994; 50(5):R2270-R2273. DOI: 10.1103/physrevc.50.r2270. View

5.
Sasano M, Perdikakis G, Zegers R, Austin S, Bazin D, Brown B . Gamow-Teller transition strengths from 56Ni. Phys Rev Lett. 2011; 107(20):202501. DOI: 10.1103/PhysRevLett.107.202501. View