We study total muon capture rates in light nuclei, taking into account renormalizations of the nuclear vector and axial vector strengths. We estimate the influence in the results of uncertainties of the spin-isospin interaction parameter and nuclear densities. A few of these reactions are theoretical benchmarks for physics involving searches for neutrino oscillations. New experiments in muon capture in several targets are suggested, in the light of some discrepancies with theory, crudeness of some experimental results and relevance to neutrino physics
Motivated by recent studies of inclusive neutrino nucleus processes and muon capture within a correl...
An ab initio Green’s function Monte Carlo (GFMC) method is introduced for calculating total rates of...
An ab initio Green’s function Monte Carlo (GFMC) method is introduced for calculating total rates of...
We use the random phase approximation to describe the muon capture rate on 44Ca, 48Ca, 56Fe, 90Zr, a...
We compare local Fermi gas and shell model in muon capture in nuclei in order to estimate the effect...
This is a brief review on ordinary muon capture (OMC) experiments at Research Center for Nuclear Phy...
Ordinary muon capture (OMC)on 100Mo is studied both experimentally and theoretically in order to acc...
Conserved muonic number may turn out to be a conserved muonic charge, coupled to muonic photons, gam...
The authors study muon capture rates in light nuclei and show that one can evaluate them in a model-...
In this work we study ordinary muon capture on $^{24}$Mg from a first principles perspective. Starti...
Searches for neutrinoless double-β decay rates are crucial in addressing questions within fundamenta...
The neutrino-nucleus cross section and the muon-capture rate are discussed within a simple formalism...
Conserved muonic number may turn out to be a conserved muonic charge, coupled to muonic photons, gam...
Searches for neutrinoless double-β decay rates are crucial in addressing questions within fundamenta...
An ab initio Green’s function Monte Carlo (GFMC) method is introduced for calculating total rates of...
Motivated by recent studies of inclusive neutrino nucleus processes and muon capture within a correl...
An ab initio Green’s function Monte Carlo (GFMC) method is introduced for calculating total rates of...
An ab initio Green’s function Monte Carlo (GFMC) method is introduced for calculating total rates of...
We use the random phase approximation to describe the muon capture rate on 44Ca, 48Ca, 56Fe, 90Zr, a...
We compare local Fermi gas and shell model in muon capture in nuclei in order to estimate the effect...
This is a brief review on ordinary muon capture (OMC) experiments at Research Center for Nuclear Phy...
Ordinary muon capture (OMC)on 100Mo is studied both experimentally and theoretically in order to acc...
Conserved muonic number may turn out to be a conserved muonic charge, coupled to muonic photons, gam...
The authors study muon capture rates in light nuclei and show that one can evaluate them in a model-...
In this work we study ordinary muon capture on $^{24}$Mg from a first principles perspective. Starti...
Searches for neutrinoless double-β decay rates are crucial in addressing questions within fundamenta...
The neutrino-nucleus cross section and the muon-capture rate are discussed within a simple formalism...
Conserved muonic number may turn out to be a conserved muonic charge, coupled to muonic photons, gam...
Searches for neutrinoless double-β decay rates are crucial in addressing questions within fundamenta...
An ab initio Green’s function Monte Carlo (GFMC) method is introduced for calculating total rates of...
Motivated by recent studies of inclusive neutrino nucleus processes and muon capture within a correl...
An ab initio Green’s function Monte Carlo (GFMC) method is introduced for calculating total rates of...
An ab initio Green’s function Monte Carlo (GFMC) method is introduced for calculating total rates of...