Nuclear transition matrix elements for neutrinoless double-β decay of 76Ge within mechanisms involving sterile neutrinos, Majorons and composite neutrinos

Author:

Rath P. K.1,Kumar A.1,Gautam R.2,Chandra R.2,Raina P. K.3,Dixit B. M.4

Affiliation:

1. Department of Physics, University of Lucknow, Lucknow, Uttar Pradesh-226007, India

2. Department of Physics, Babasaheb Bhimrao Ambedkar University, Lucknow, Uttar Pradesh-226025, India

3. Department of Physics, Indian Institute of Technology, Ropar, Rupnagar, Punjab-140001, India

4. Faculty of Physical Sciences, SRM University, Barabanki-225013, India

Abstract

Using HFB wave functions generated with a realistic KUO and an empirical JUNE45 effective two-body interactions, nuclear transition matrix elements (NTMEs) [Formula: see text] for the [Formula: see text] transition of neutrinoless double-[Formula: see text] decay of [Formula: see text]Ge isotope are calculated within mechanisms involving sterile neutrinos, Majorons and compositeness scenario. Uncertainties in nuclear transition matrix elements are estimated by calculating sets of 12 NTMEs with these two sets of wave functions, two alternative forms of finite size effects (FNS) and three different parametrizations of short range correlations (SRC). Uncertainties in NTMEs within mechanisms involving sterile neutrinos, Majorons and composite neutrinos turn out to be about 10%–36% depending on the mass of sterile neutrinos, 10% and 37%, respectively.

Funder

DST-SERB, India

Council of Scientific and Industrial Research (CSIR), India

Publisher

World Scientific Pub Co Pte Lt

Subject

General Physics and Astronomy,Nuclear and High Energy Physics

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