The landscape of two-proton radioactivity
arXiv:1303.1164 · doi:10.1103/PhysRevLett.110.222501
Abstract
Ground-state two-proton (2p) radioactivity is a decay mode found in isotopes of elements with even atomic numbers located beyond the two-proton drip line. So far, this exotic process has been experimentally observed in a few light and medium-mass nuclides with Z less than or equal to 30. In this study, using state-of-the-art nuclear density functional theory, we globally analyze 2p radioactivity and for the first time identify 2p decay candidates in elements heavier than strontium. We predict a few cases where the competition between 2p emission and alpha decay may be observed. In nuclei above lead, the alpha decay mode is found to be dominating and no measurable candidates for the 2p radioactivity are expected.
1 page, 2 encapsulated-postscript figures; this work has been accepted for publication in Physical Review Letters
References in corpus (6)
- Nuclear energy density optimization: Large deformations
- Radioactive decays at limits of nuclear stability
- Two-proton radioactivity
- Current Status and Future Potential of Nuclide Discoveries
- Proton-proton correlations observed in two-proton decay of Mg and Ne
- Democratic decay of 6Be exposed by correlations
Cited by in corpus (27)
- Impact of nuclear mass uncertainties on the -process
- Proton spectroscopy of 48Ni, 46Fe, and 44Cr
- Two-proton radioactivity within a generalized liquid drop model
- Recent Progress in Two-proton Radioactivity
- Neutron skin uncertainties of Skyrme energy density functionals
- Beyond the proton drip line: Bayesian analysis of proton-emitting nuclei
- The structural evolution in transitional nuclei of mass 80 A 132
- The observation of long-range three-body Coloumb effects in the decay of 16Ne
- Two-proton emission and related phenomena
- Different mechanism of two-proton emission from proton-rich nuclei Al and Mg
- Dependence of two-proton radioactivity on nuclear pairing models
- Isospin-invariant Skyrme energy-density-functional approach with axial symmetry
- Proton-proton correlations in distinguishing the two-proton emission mechanism of Al and Mg
- Two-proton radioactivity of exotic nuclei beyond proton drip-line
- Two-proton radioactivity within Coulomb and proximity potential model
- Systematic study of two-proton radioactivity half-lives within the two-potential approach with Skyrme-Hartree-Fock
- Spectroscopy of excited states of unbound nuclei Ar and Cl
- High-precision mass measurement of Sn restores smoothness of the mass surface
- Isobaric-multiplet mass equation in a macroscopic-microscopic approach
- Extended R-matrix description of two-proton radioactivity
- The H states studied in the reaction and evidence of extremely correlated character of the H ground state
- Time-dependent Dirac equation applied to one-proton radioactive emission
- Pauli-principle driven correlations in four-neutron nuclear decays
- Investigation of the high-spin rotational properties of the proton emitter Cs using a particle-number conserving method
- Radii of proton emitters
- Exploratory study on the masses of odd- nuclei and -process simulation based on the deformed relativistic Hartree-Bogoliubov theory in continuum
- Systematic study of two-proton radioactivity with a screened electrostatic barrier