In recent years, remarkable progress has been achieved in developing novel non-perturbative techniques for constructing valence space shell model Hamiltonians from realistic internucleon interactions. One of these methods is based on the Okubo--Lee--Suzuki (OLS) unitary transformation applied to no-core shell model (NCSM) solutions. In the present work, we implement the corresponding approach to solve for valence space effective electromagnetic operators. To this end, we use the NCSM results for $A=16-18$, obtained at $N_{\rm max}=4$, to derive a charge-dependent version of the effective interaction for the $sd$ shell, which allows us to exactly reproduce selected NCSM spectra of $^{18}$O, $^{18}$F and $^{18}$Ne within the two valence nucle...
We perform a quantitative study of the microscopic effective shell-model interactions in the valence...
International audienceWe explore the impact of optimizations of the single-particle basis on the con...
In this work we apply and extend the in-medium no-core shell model (IM-NCSM), which is a combination...
In recent years, remarkable progress has been achieved in developing novel non-perturbative techniqu...
Recent breakthroughs in effective interaction and effective operator techniques allow us to take a n...
International audienceBackground: Many nuclear structure calculations, even for full configuration i...
We review the application of effective operator formalism to the ab initio no core shell model (NCSM...
We calculate two-body effective interactions starting from a free nucleon-nucleon interaction and ap...
Solutions to the nuclear many-body problem rely on effective interactions, and in general effective ...
We perform a quantitative study of the microscopic effective shell-model interactions in the valence...
In this work, we extend two successful nuclear-structure methods, the valence-space and the no-core ...
Different techniques for calculating effective operators within the framework of the shell model usi...
The ab initio No-Core Shell Model (NCSM) adopts an intrinsic Hamiltonian for all nucleons in the nuc...
The ab initio No-Core Shell Model (NCSM) adopts an intrinsic Hamiltonian for all nucleons in the nuc...
We present a new approach to the construction of effective interactions suitable for many-body calcu...
We perform a quantitative study of the microscopic effective shell-model interactions in the valence...
International audienceWe explore the impact of optimizations of the single-particle basis on the con...
In this work we apply and extend the in-medium no-core shell model (IM-NCSM), which is a combination...
In recent years, remarkable progress has been achieved in developing novel non-perturbative techniqu...
Recent breakthroughs in effective interaction and effective operator techniques allow us to take a n...
International audienceBackground: Many nuclear structure calculations, even for full configuration i...
We review the application of effective operator formalism to the ab initio no core shell model (NCSM...
We calculate two-body effective interactions starting from a free nucleon-nucleon interaction and ap...
Solutions to the nuclear many-body problem rely on effective interactions, and in general effective ...
We perform a quantitative study of the microscopic effective shell-model interactions in the valence...
In this work, we extend two successful nuclear-structure methods, the valence-space and the no-core ...
Different techniques for calculating effective operators within the framework of the shell model usi...
The ab initio No-Core Shell Model (NCSM) adopts an intrinsic Hamiltonian for all nucleons in the nuc...
The ab initio No-Core Shell Model (NCSM) adopts an intrinsic Hamiltonian for all nucleons in the nuc...
We present a new approach to the construction of effective interactions suitable for many-body calcu...
We perform a quantitative study of the microscopic effective shell-model interactions in the valence...
International audienceWe explore the impact of optimizations of the single-particle basis on the con...
In this work we apply and extend the in-medium no-core shell model (IM-NCSM), which is a combination...