Spin-dipole nuclear matrix element for the double beta decay of 76Ge by the (3He, t) charge-exchange reaction

Autor: C. Agodi, F Diel, Francesco Cappuzzello, C. A. Douma, M. Holl, M. Fujiwara, Manuela Cavallaro, Daniele Carbone, Yifei Niu, H. Ejiri, Hidetoshi Akimune, Nasser Kalantar-Nayestanaki, G. Gey, Kichiji Hatanaka, Kai Zuber, Atsushi Tamii, A. Inoue, Hisanori Fujita, P. Puppe, F. Hattori, M. Alanssari, K. Heguri, V. Werner, M.N. Harakeh, D. Frekers, P. Ries, Gianluca Colò, Y. Fujita
Přispěvatelé: Research unit Nuclear & Hadron Physics
Jazyk: angličtina
Rok vydání: 2020
Předmět:
Zdroj: Journal of Physics G: Nuclear and Particle Physics, 47(5):05LT01. IOP PUBLISHING LTD
ISSN: 0954-3899
Popis: Nuclear matrix elements (NMEs) for double beta decays (DBDs) are crucial for studying the neutrino mass and other neutrino properties beyond the standard electro-weak model by measuring neutrino-less DBDs. The spin-dipole (SD) J π = 2- NME is one of the major components associated with the DBD NME. The SD NME for 76Ge was derived for the first time by using the 74,76 Ge (3He, t) at RCNP Osaka. The obtained SD NME for the 76Ge → 76As ground-state transition is in natural units. This is smaller by a coefficient around k ≈ 0.2 with respect to the quasi-particle model NME. The impact of the reduced (quenched) SD NME on DBD neutrino studies is discussed.
Databáze: OpenAIRE