English

NURE: An ERC project to study nuclear reactions for neutrinoless double beta decay

Nuclear Experiment 2020-02-10 v1

Abstract

Neutrinoless double beta decay (0{\nu}\b{eta}\b{eta}) is considered the best potential resource to determine the absolute neutrino mass scale. Moreover, if observed, it will signal that the total lepton number is not conserved and neutrinos are their own anti-particles. Presently, this physics case is one of the most important research beyond Standard Model and might guide the way towards a Grand Unified Theory of fundamental interactions. Since the \b{eta}\b{eta} decay process involves nuclei, its analysis necessarily implies nuclear structure issues. The 0{\nu}\b{eta}\b{eta} decay rate can be expressed as a product of independent factors: the phase-space factors, the nuclear matrix elements (NME) and a function of the masses of the neutrino species. Thus the knowledge of the NME can give information on the neutrino mass scale, if the 0{\nu}\b{eta}\b{eta} decay rate is measured. In the NURE project, supported by a Starting Grant of the European Research Council, nuclear reactions of double charge-exchange (DCE) will be used as a tool to extract information on the \b{eta}\b{eta} NME. In DCE reactions and \b{eta}\b{eta} decay, the initial and final nuclear states are the same and the transition operators have similar structure. Thus the measurement of the DCE absolute crosssections can give crucial information on \b{eta}\b{eta} matrix elements.

Keywords

Cite

@article{arxiv.2002.02761,
  title  = {NURE: An ERC project to study nuclear reactions for neutrinoless double beta decay},
  author = {M. Cavallaro and E. Aciksoz and L. Acosta and C. Agodi and N. Auerbach and J. Bellone and R. Bijker and S. Bianco and D. Bonanno and D. Bongiovanni and T. Borello and I. Boztosun and V. Branchina and M. P. Bussa and L. Busso and S. Calabrese and L. Calabretta and A. Calanna and D. Calvo and F. Cappuzzello and D. Carbone and E. R. Chavez Lomeli and M. Colonna and G. D Agostino and N. Deshmuk and P. N. de Faria and C. Ferraresi and J. L. Ferreira and P. Finocchiaro and M. Fisichella and A. Foti and G. Gallo and U. Garcia and G. Giraudo and V. Greco and A. Hacisalihoglu and J. Kotila and F. Iazzi and R. Introzzi and G. Lanzalone and A. Lavagno and F. La Via and J. A. Lay and H. Lenske and R. Linares and G. Litrico and F. Longhitano and D. Lo Presti and J. Lubian and N. Medina and D. R. Mendes and A. Muoio and J. R. B. Oliveira and A. Pakou and L. Pandola and H. Petrascu and F. Pinna and F. Pirri and S. Reito and D. Rifuggiato and M. R. D. Rodrigues and A. D. Russo and G. Russo and G. Santagati and E. Santopinto and O. Sgouros and S. O. Solakci and G. Souliotis and V. Soukeras and D. Torresi and S. Tudisco and R. I. M. Vsevolodovna and R. Wheadon and V. A. B. Zagatto},
  journal= {arXiv preprint arXiv:2002.02761},
  year   = {2020}
}

Comments

arXiv admin note: substantial text overlap with arXiv:2001.09657; text overlap with arXiv:2001.09648