arXiv · 1804.02105
Neutrinoless $ββ$ decay mediated by the exchange of light and heavy neutrinos: The role of nuclear structure correlations
Abstract
Neutrinoless $ββ$ decay nuclear matrix elements calculated with the shell model and energy-density functional theory typically disagree by more than a factor of two in the standard scenario of light-neutrino exchange. In contrast, for a decay mediated by sterile heavy neutrinos the deviations are reduced to about 50\%, an uncertainty similar to the one due to short-range effects. We compare matrix elements in the light- and heavy-neutrino-exchange channels, exploring the radial, momentum transfer and angular momentum-parity matrix element distributions, and considering transitions that involve correlated and uncorrelated nuclear states. We argue that the shorter-range heavy-neutrino exchange is less sensitive to collective nuclear correlations, and that discrepancies in matrix elements are mostly due to the treatment of long-range correlations in many-body calculations. Our analysis supports previous studies suggesting that isoscalar pairing correlations, which affect mostly the longer-range part of the neutrinoless $ββ$ decay operator, are partially responsible for the differences between nuclear matrix elements in the standard light-neutrino-exchange mechanism.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Javier Menéndez. 2018-04-06. Neutrinoless $ββ$ decay mediated by the exchange of light and heavy neutrinos: The role of nuclear structure correlations. https://doi.org/10.1088/1361-6471%2Faa9bd4
Cite the original work for its findings. Save a collection to share your selection of sources.