English

Uncertainties in nuclear transition matrix elements for neutrinoless $\beta \beta $ decay within the PHFB model

Nuclear Theory 2015-05-27 v1

Abstract

The nuclear transition matrix elements M(0ν)M^{(0\nu)} for the neutrinoless double beta decay of 94,96^{94,96}Zr, 98,100^{98,100}Mo, 104^{104}Ru, 110^{110}Pd, 128,130^{128,130}Te and 150^{150}Nd isotopes in the case of 0+0+0^{+}\rightarrow 0^{+} transition are calculated using the PHFB wave functions, which are eigenvectors of four different parameterizations of a Hamiltonian with pairing plus multipolar effective two-body interaction. \QCOM{35}{In addition, the consideration of} Employing two (three) different parameterizations of Jastrow-type short range correlations, \QCOM{19}{provides us with} a set of eight (twelve) different nuclear transition matrix elements M(0ν)M^{(0\nu)} is built for each decay, whose averages in conjunction with their standard deviations provide an estimate of the model uncertainties.

Keywords

Cite

@article{arxiv.1104.3965,
  title  = {Uncertainties in nuclear transition matrix elements for neutrinoless $\beta \beta $ decay within the PHFB model},
  author = {P. K. Rath and R. Chandra and K. Chaturvedi and P. K. Raina and J. G. Hirsch},
  journal= {arXiv preprint arXiv:1104.3965},
  year   = {2015}
}
R2 v1 2026-06-21T17:56:41.148Z