In this work a novel theoretical and computational method for computing electroweak beta decay spectra of medium and heavy-mass nuclei, as well as the electronic structure of atomic and molecular systems is developed. In particular, starting from the phenomenological electroweak interaction of the Standard Model (SM) of particles, a general expression of the beta decay rate was derived. Relativistic effects are taken into account by solving the many-electron Dirac equation from first-principles. Furthermore, an extension of this approach to include the nucleon-nucleon interaction at the same level of theory of the electronic correlations has been devised. It is shown that post-collisional effects, and to a lesser extent the electro...
We present recent advances in the development of atomic ab initio multiconfiguration Dirac–Hartree–F...
We study electroweak processes in complex nuclei within the framework of self‐consistent mean field ...
Nuclear weak interactions, like beta decay, are important inputs for modeling astrophysical explosio...
In this work a novel theoretical and computational method for computing electroweak beta decay spec...
In this work a novel theoretical and computational method for computing electroweak beta decay spect...
In this chapter we focus first on the theoretical methods and relevant computational approaches to c...
In this chapter we focus first on the theoretical methods and relevant computational approaches to c...
In this chapter we focus first on the theoretical methods and relevant computational approaches to c...
In this chapter we focus first on the theoretical methods and relevant computational approaches to c...
Atomic nuclei exhibit many phenomena not limited to excited states, decays, reactions, and clusteri...
Nuclear physics today is a diverse field, involving research that extends from the minus- cule scale...
We present recent advances in the development of atomic ab initio multiconfiguration Dirac–Hartree–F...
We present recent advances in the development of atomic ab initio multiconfiguration Dirac–Hartree–F...
The search for weak-interaction induced atomic parity non-conservation, initiated in the 70s, challe...
Within this thesis, we provide a theoretical description of nuclear decay by elec- tron capture. We ...
We present recent advances in the development of atomic ab initio multiconfiguration Dirac–Hartree–F...
We study electroweak processes in complex nuclei within the framework of self‐consistent mean field ...
Nuclear weak interactions, like beta decay, are important inputs for modeling astrophysical explosio...
In this work a novel theoretical and computational method for computing electroweak beta decay spec...
In this work a novel theoretical and computational method for computing electroweak beta decay spect...
In this chapter we focus first on the theoretical methods and relevant computational approaches to c...
In this chapter we focus first on the theoretical methods and relevant computational approaches to c...
In this chapter we focus first on the theoretical methods and relevant computational approaches to c...
In this chapter we focus first on the theoretical methods and relevant computational approaches to c...
Atomic nuclei exhibit many phenomena not limited to excited states, decays, reactions, and clusteri...
Nuclear physics today is a diverse field, involving research that extends from the minus- cule scale...
We present recent advances in the development of atomic ab initio multiconfiguration Dirac–Hartree–F...
We present recent advances in the development of atomic ab initio multiconfiguration Dirac–Hartree–F...
The search for weak-interaction induced atomic parity non-conservation, initiated in the 70s, challe...
Within this thesis, we provide a theoretical description of nuclear decay by elec- tron capture. We ...
We present recent advances in the development of atomic ab initio multiconfiguration Dirac–Hartree–F...
We study electroweak processes in complex nuclei within the framework of self‐consistent mean field ...
Nuclear weak interactions, like beta decay, are important inputs for modeling astrophysical explosio...