© 2019, Società Italiana di Fisica / Springer-Verlag GmbH Germany, part of Springer Nature. The solution of the nuclear A -body problem encounters severe limitations from the size of many-body operators that are processed to solve the stationary Schrödinger equation. These limitations are typically related to both the (iterative) storing of the associated tensors and to the computational time related to their multiple contractions in the calculation of various quantities of interest. However, not all the degrees of freedom encapsulated into these tensors equally contribute to the description of many-body observables. Identifying systematic and dominating patterns, a relevant objective is to achieve an a priori reduction to the most relevant...
A Rayleigh–Schrödinger many-body perturbation theory (MBPT) approach is introduced by making use of ...
The ongoing progress in (nuclear) many-body theory is accompanied by an ever-rising increase in comp...
The last few decades in nuclear structure theory have seen a rapid expansion of ab initio theories, ...
International audienceThe solution of the nuclear A -body problem encounters severe limitations from...
The solution of the nuclear A -body problem encounters severe limitations from the size of many-body...
Expansion many-body methods correspond to solving complex tensor networks. The (iterative) solving o...
International audienceExpansion many-body methods correspond to solving complex tensor networks. The...
© 2019 American Physical Society. Background: The computational resources needed to generate the ab ...
International audienceBackground: The computational resources needed to generate the ab initio solut...
The extension of ab initio quantum many-body theory to higher accuracy and larger systems is intrins...
In order to solve the A-body Schrödinger equation both accurately and efficiently for open-shell nuc...
Given elementary inter-nucleon interactions,the resolution of the A-body Schrödinger equation gives ...
International audienceA novel Rayleigh-Schr\"odinger many-body perturbation theory (MBPT) approach i...
A Rayleigh–Schrödinger many-body perturbation theory (MBPT) approach is introduced by making use of ...
The ongoing progress in (nuclear) many-body theory is accompanied by an ever-rising increase in comp...
The last few decades in nuclear structure theory have seen a rapid expansion of ab initio theories, ...
International audienceThe solution of the nuclear A -body problem encounters severe limitations from...
The solution of the nuclear A -body problem encounters severe limitations from the size of many-body...
Expansion many-body methods correspond to solving complex tensor networks. The (iterative) solving o...
International audienceExpansion many-body methods correspond to solving complex tensor networks. The...
© 2019 American Physical Society. Background: The computational resources needed to generate the ab ...
International audienceBackground: The computational resources needed to generate the ab initio solut...
The extension of ab initio quantum many-body theory to higher accuracy and larger systems is intrins...
In order to solve the A-body Schrödinger equation both accurately and efficiently for open-shell nuc...
Given elementary inter-nucleon interactions,the resolution of the A-body Schrödinger equation gives ...
International audienceA novel Rayleigh-Schr\"odinger many-body perturbation theory (MBPT) approach i...
A Rayleigh–Schrödinger many-body perturbation theory (MBPT) approach is introduced by making use of ...
The ongoing progress in (nuclear) many-body theory is accompanied by an ever-rising increase in comp...
The last few decades in nuclear structure theory have seen a rapid expansion of ab initio theories, ...