English

Double Gamow-Teller transitions and its relation to neutrinoless $\beta\beta$ decay

Nuclear Theory 2018-04-11 v2 High Energy Physics - Experiment High Energy Physics - Phenomenology Nuclear Experiment

Abstract

We study the double Gamow-Teller (DGT) strength distribution of 48^{48}Ca with state-of-the-art large-scale nuclear shell model calculations. Our analysis shows that the centroid energy of the DGT giant resonance depends mostly on the isovector pairing interaction, while the resonance width is more sensitive to isoscalar pairing. Pairing correlations are also key in neutrinoless ββ\beta\beta (0νββ0\nu\beta\beta) decay. We find a simple relation between the centroid energy and width of the 48^{48}Ca DGT giant resonance and %the value of the 0νββ0\nu\beta\beta decay nuclear matrix element. More generally, we observe a very good linear correlation between the DGT transition to the ground state of the final nucleus and the 0νββ0\nu\beta\beta decay matrix element. The correlation, which originates on the dominant short-range character of both transitions, extends to heavier systems including several ββ\beta\beta emitters, and also holds in energy-density functional results. Our findings suggest that DGT experiments can be a very valuable tool to obtain information on the value of 0νββ0\nu\beta\beta decay nuclear matrix elements.

Keywords

Cite

@article{arxiv.1709.01088,
  title  = {Double Gamow-Teller transitions and its relation to neutrinoless $\beta\beta$ decay},
  author = {Noritaka Shimizu and Javier Menéndez and Kentaro Yako},
  journal= {arXiv preprint arXiv:1709.01088},
  year   = {2018}
}

Comments

6 pages, 5 figures, published version