Background: In the "island of inversion,"ground states of neutron-rich sd-shell nuclei exhibit strong admixtures of intruder configurations from the fp shell. The nucleus Mg30, located at the boundary of the island of inversion, serves as a cornerstone to track the structural evolution as one approaches this region. Purpose: Spin-parity assignments for excited states in Mg30, especially negative-parity levels, have yet to be established. In the present work, the nuclear structure of Mg30 was investigated by in-beam γ-ray spectroscopy mainly focusing on firm spin-parity determinations. Method: High-intensity rare-isotope beams of Mg31, Mg32, Si34, and P35 bombarded a Be target to induce nucleon removal reactions populating states in Mg30. γ rays were detected by the state-of-the-art γ-ray tracking array GRETINA. For the direct one-neutron removal reaction, final-state exclusive cross sections and parallel momentum distributions were deduced. Multinucleon removal reactions from different...

Structure of Mg 30 explored via in-beam γ -ray spectroscopy

Langer C.;Recchia F.;
2020

Abstract

Background: In the "island of inversion,"ground states of neutron-rich sd-shell nuclei exhibit strong admixtures of intruder configurations from the fp shell. The nucleus Mg30, located at the boundary of the island of inversion, serves as a cornerstone to track the structural evolution as one approaches this region. Purpose: Spin-parity assignments for excited states in Mg30, especially negative-parity levels, have yet to be established. In the present work, the nuclear structure of Mg30 was investigated by in-beam γ-ray spectroscopy mainly focusing on firm spin-parity determinations. Method: High-intensity rare-isotope beams of Mg31, Mg32, Si34, and P35 bombarded a Be target to induce nucleon removal reactions populating states in Mg30. γ rays were detected by the state-of-the-art γ-ray tracking array GRETINA. For the direct one-neutron removal reaction, final-state exclusive cross sections and parallel momentum distributions were deduced. Multinucleon removal reactions from different...
2020
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11577/3468177
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