NSR Query Results
Output year order : Descending NSR database version of May 10, 2024. Search: Author = F.Deppisch Found 8 matches. 2020DE35 Phys.Rev. D 102, 051701(R) (2020) F.F.Deppisch, L.Graf, W.Rodejohann, X.-J.Xu Neutrino self-interactions and double beta decay RADIOACTIVITY 48Ca, 76Ge, 136Xe, 100Mo, 128,130Te(2β-); analyzed available data; deduced rates parameters, nuclear matrix elements.
doi: 10.1103/PhysRevD.102.051701
2018DE06 Phys.Rev. D 97, 035005 (2018) F.F.Deppisch, C.Hati, S.Patra, P.Pritimita, U.Sarkar Neutrinoless double beta decay in left-right symmetric models with a universal seesaw mechanism
doi: 10.1103/PhysRevD.97.035005
2018DE32 Phys.Rev. D 98, 055029 (2018) F.F.Deppisch, L.Graf, J.Harz, W.-C.Huang Neutrinoless double beta decay and the baryon asymmetry of the Universe RADIOACTIVITY 76Ge, 136Xe(2β-); analyzed available data; deduced the washout of lepton number in the early universe.
doi: 10.1103/PhysRevD.98.055029
2016DE33 Phys.Rev. C 94, 055501 (2016) Statistical analysis of β decays and the effective value of gA in the proton-neutron quasiparticle random-phase approximation framework RADIOACTIVITY 62Cu, 62Zn, 68Ga, 68Ge, 80Rb, 118Sb, 118Te, 120Sb, 122I, 122Xe, 122,124,126,128Cs, 124,126,128Ba, 134La, 134Ce, 138,140Pr, 138,140Nd, 140,142Pm, 140,142Sm, 140,142Eu, 140Gd(EC), (β+); 66Ni, 66,68,70Cu, 80As, 98Y, 98Zr, 100Nb, 102Mo, 102Tc, 106Rh, 108Ru, 108Rh, 114Pd, 114Ag, 118,120,122Cd, 118,120,122In(β-); 64Cu, 70Ga, 78,80Br, 100Tc, 104Rh, 106,108,110Ag, 112,114,116In, 128I, 130Cs(EC), (β-); analyzed comparative half-lives (logft values) for ground state-to-ground-state single β+/electron-capture and β- decays for isobaric triplets and multiplets by Markov chain Monte Carlo (MCMC) statistical analysis, and compared with proton-neutron quasiparticle random-phase approximation framework with G-matrix based on two-nucleon interactions; deduced effective axial-vector coupling constant gA. 70Zn, 80Se, 100Mo, 104Ru, 110Pd, 114,116Cd, 122Sn, 128Te(2β-); calculated half-lives, and compared with available experimental values.
doi: 10.1103/PhysRevC.94.055501
2012DE28 J.Phys.(London) G39, 124007 (2012) Neutrinoless double-beta decay and physics beyond the standard model RADIOACTIVITY 76Ge, 82Se, 100Mo, 116Cd, 128,130Te, 136Xe, 150Nd(2β-); calculated nuclear matrix elements. pnQRPA, short-range SUSY methods.
doi: 10.1088/0954-3899/39/12/124007
2010DE08 Prog.Part.Nucl.Phys. 64, 278 (2010) F.Deppisch, C.Jackson, I.Nasteva, S.Soldner-Rembold Probing the mechanism of neutrinoless double beta decay with SuperNEMO
doi: 10.1016/j.ppnp.2009.12.028
2006DE31 Nucl.Phys. B752, 80 (2006) F.Deppisch, T.S.Kosmas, J.W.F.Valle Enhanced μ- - e- conversion in nuclei in the inverse seesaw model NUCLEAR REACTIONS 27Al, 48Ti, 197Au(μ-, e-), E not given; analyzed μ- → e- conversion data; deduced parameters. 12C, 27Al, 32S, 40Ca, 48Ti, 63Cu, 90Zr, 112Cd, 197Au, 208Pb, 238U(μ-, e-), E not given; analyzed conversion rates, branching ratios, related features. Inverse seesaw model of neutrino masses.
doi: 10.1016/j.nuclphysb.2006.06.032
2005DE41 Phys.Rev. D 72, 033012 (2005) Double beta decay versus cosmology: Majorana CP phases and nuclear matrix elements
doi: 10.1103/PhysRevD.72.033012
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