Abstract
The 1789 keV state in Mg30 was identified as the first excited 0+ state via its electric monopole (E0) transition to the ground state. The measured small value of ρ2(E0,02+→01+)=(26.2±7.5)×10-3 implies within a two-level model a small mixing of competing configurations with largely different intrinsic quadrupole deformation near the neutron shell closure at N=20. Axially symmetric configuration mixing calculations identify the ground state of Mg30 to be based on neutron configurations below the N=20 shell closure, while the excited 0+ state mainly consists of two neutrons excited into the ν 1f7/2 orbital. The experimental result represents the first case where an E0 back decay from a strongly deformed second to the normal deformed first nuclear potential minimum well has been unambiguously identified, thus directly proving shape coexistence at the borderline of the much-debated "island of inversion". © 2009 The American Physical Society.
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CITATION STYLE
Schwerdtfeger, W., Thirolf, P. G., Wimmer, K., Habs, D., MacH, H., Rodriguez, T. R., … Ring, P. (2009). Shape Coexistence Near Neutron Number N=20: First Identification of the E0 Decay from the Deformed First Excited Jπ=0+ State in Mg30. Physical Review Letters, 103(1). https://doi.org/10.1103/PhysRevLett.103.012501
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