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arXiv:1803.07656·v1·Nuclear Theory

The puzzling two-proton decay of Kr

S.M. Wang · W. Nazarewicz

Abstract

Two-proton (2) radioactivity is a rare decay mode found in a few proton-unbound nuclei. The -decay lifetime and properties of emitted protons carry invaluable information on nuclear structure in the presence of low-lying proton continuum. The recently measured decay of Kr [Phys. Rev. Lett. 117, 162501 (2016)] turned out to be unexpectedly fast. Since Kr is expected to be a deformed system, we investigate the impact of deformation effects on the radioactivity. We apply the recently developed Gamow coupled-channel framework, which allows for a precise description of three-body systems in the presence of rotational and vibrational couplings. This is the first application of a three-body approach to a two-nucleon decay from a deformed nucleus. We show that deformation couplings significantly increase the decay width of Kr; this finding explains the puzzling experimental data. The calculated angular proton-proton correlations reflect a competition between and decay modes in this nucleus.

Comments: 3 figures

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