We summarize recent ab initio studies of low-energy electroweak reactions of astrophysical interest, relevant for both big bang nucleosynthesis and solar neutrino production. The calculational methods include direct integration for np radiative and pp weak capture, correlated hyperspherical harmonics for reactions of A=3,4 nuclei, and variational Monte Carlo for A=6,7 nuclei. Realistic nucleon-nucleon and three-nucleon interactions and consistent current operators are used as input
AbstractNuclear astrophysics plays an important role in understanding open issues of neutrino physic...
Nuclear astrophysics aims to measure nuclear-reaction cross sections of astrophysical interest to be...
Assuming the universality of weak interactions, we have studied the weak processes such as β-decay a...
We summarize recent ab initio studies of low-energy electroweak reactions of astrophysical interest,...
fWe summarize recent ab initio studies of low-energy electroweak reactions of astrophysical interest...
We review the most recent theoretical studies of nuclear reactions of astrophysical interest involvi...
In this contribution a brief overview of the status and recent developments of ab-initio studies of ...
We review the most recent theoretical studies of nuclear reactions of astrophysical interest involvi...
Precise nuclear reaction rates are needed for a detailed description of the production of elements i...
Abstract Nuclear astrophysics plays an important role in understanding open issues of neutrino physi...
We discuss results and future plans for low-energy reactions that play an important role in current ...
Big Bang Nucleosynthesis (BBN) requires several nuclear physics inputs and nuclear reaction rates. A...
Nuclear weak interactions, like beta decay, are important inputs for modeling astrophysical explosio...
The investigation of light nuclei with ab-initio methods provides an optimal set...
AbstractThe cross sections for low-energy neutrino–deuteron reactions are calculated within heavy-ba...
AbstractNuclear astrophysics plays an important role in understanding open issues of neutrino physic...
Nuclear astrophysics aims to measure nuclear-reaction cross sections of astrophysical interest to be...
Assuming the universality of weak interactions, we have studied the weak processes such as β-decay a...
We summarize recent ab initio studies of low-energy electroweak reactions of astrophysical interest,...
fWe summarize recent ab initio studies of low-energy electroweak reactions of astrophysical interest...
We review the most recent theoretical studies of nuclear reactions of astrophysical interest involvi...
In this contribution a brief overview of the status and recent developments of ab-initio studies of ...
We review the most recent theoretical studies of nuclear reactions of astrophysical interest involvi...
Precise nuclear reaction rates are needed for a detailed description of the production of elements i...
Abstract Nuclear astrophysics plays an important role in understanding open issues of neutrino physi...
We discuss results and future plans for low-energy reactions that play an important role in current ...
Big Bang Nucleosynthesis (BBN) requires several nuclear physics inputs and nuclear reaction rates. A...
Nuclear weak interactions, like beta decay, are important inputs for modeling astrophysical explosio...
The investigation of light nuclei with ab-initio methods provides an optimal set...
AbstractThe cross sections for low-energy neutrino–deuteron reactions are calculated within heavy-ba...
AbstractNuclear astrophysics plays an important role in understanding open issues of neutrino physic...
Nuclear astrophysics aims to measure nuclear-reaction cross sections of astrophysical interest to be...
Assuming the universality of weak interactions, we have studied the weak processes such as β-decay a...