Testing the importance of collective correlations in neutrinoless decay
arXiv:1510.06824 · doi:10.1103/PhysRevC.93.014305
Abstract
We investigate the extent to which theories of collective motion can capture the physics that determines the nuclear matrix elements governing neutrinoless double-beta decay. To that end we calculate the matrix elements for a series of isotopes in the full shell, omitting no spin-orbit partners. With the inclusion of isoscalar pairing, a separable collective Hamiltonian that is derived from the shell model effective interaction reproduces the full shell-model matrix elements with good accuracy. A version of the generator coordinate method that includes the isoscalar pairing amplitude as a coordinate also reproduces the shell model results well, an encouraging result for theories of collective motion, which can include more single-particle orbitals than the shell model. We briefly examine heavier nuclei relevant for experimental double-beta decay searches, in which shell-model calculations with all spin-orbit partners are not feasible; our estimates suggest that isoscalar pairing also plays a significant role in these nuclei, though one we are less able to quantify precisely.
9 pages, 7 figures, published version
References in corpus (14)
- Double Beta Decay, Majorana Neutrinos, and Neutrino Mass
- Disassembling the Nuclear Matrix Elements of the Neutrinoless double beta Decay
- Energy density functional study of nuclear matrix elements for neutrinoless decay
- and nuclear matrix elements in the interacting boson model with isospin restoration
- The influence of pairing on the nuclear matrix elements of the neutrinoless double beta decays
- and nuclear matrix elements, QRPA, and isospin symmetry restoration
- The 0nbb-decay nuclear matrix elements with self-consistent short-range correlations
- Shape and pairing fluctuations effects on neutrinoless double beta decay nuclear matrix elements
- Systematic study of nuclear matrix elements in neutrinoless double-beta decay with a beyond mean-field covariant density functional theory
- Shell model studies of the neutrinoless double-beta decay
- The occupancies of individual orbits and the nuclear matrix element of the Ge neutrinoless decay
- Proton-Neutron Pairing Amplitude as a Generator Coordinate for Double-Beta Decay
- Correlations and neutrinoless decay nuclear matrix elements of -shell nuclei
- Novel Nuclear Structure Aspects of the Neutrinoless Double Beta Decay
Cited by in corpus (27)
- Status and Future of Nuclear Matrix Elements for Neutrinoless Double-Beta Decay: A Review
- Toward the discovery of matter creation with neutrinoless double-beta decay
- Ab Initio Treatment of Collective Correlations and the Neutrinoless Double Beta Decay of Ca
- Neutrinoless decay mediated by the exchange of light and heavy neutrinos: The role of nuclear structure correlations
- Double Gamow-Teller transitions and its relation to neutrinoless decay
- Nuclear matrix element of neutrinoless double- decay: Relativity and short-range correlations
- Large-scale shell-model analysis of the neutrinoless decay of Ca
- Neutrinoless double beta decay matrix elements in light nuclei
- Generator-coordinate reference states for spectra and decay in the in-medium similarity renormalization group
- Beyond-mean-field approaches for nuclear neutrinoless double beta decay in the standard mechanism
- Neutrinoless double-beta decay matrix elements in large shell-model spaces with the generator-coordinate method
- Nucleosynthesis and observation of the heaviest elements
- Ab initio benchmarks of neutrinoless double beta decay in light nuclei with a chiral Hamiltonian
- Octupole correlations in low-lying states of 150Nd and 150Sm and their impact on neutrinoless double-beta decay
- Neutrinoless double-beta decay: combining quantum Monte Carlo and the nuclear shell model with the generalized contact formalism
- Neutrinoless double- decay of Sn, Te, and Xe in the Hamiltonian-based generator-coordinate method
- Ab initio studies of double Gamow-Teller transition and its correlation with neutrinoless double beta decay
- decay as a probe of neutrinoless decay nuclear matrix elements
- Isoscalar-isovector proton-neutron pairing and quartet condensation in N=Z nuclei
- The union of rotational and vibrational modes in generator-coordinate-type calculations, with application to neutrinoless double-beta decay
- Benchmarking Xe Neutrinoless Decay Matrix Element Calculations with the Reaction
- Global calculation of two-neutrino double- decay within the finite amplitude method in nuclear density functional theory
- Application of efficient generator-coordinate subspace-selection algorithm to neutrinoless double- decay
- Neutron-proton pairing and double-beta decay in the interacting boson model
- Two-neutrino double-beta decay matrix elements based on relativistic nuclear energy density functional
- Impact of isovector pairing fluctuation on neutrinoless double-beta decay in multi-reference covariant density functional theory
- Nuclear physics insights for new-physics searches using nuclei: Neutrinoless decay and dark matter direct detection