International audienceWe present an extension of the random-phase approximation (RPA) where the RPA phonons are used as building blocks to construct the excited states. In our model, that we call double RPA (DRPA), we include up to two RPA phonons. This is an approximate and simplified way, with respect to the full second random-phase approximation (SRPA), to extend the RPA by including two-particle–two-hole configurations. Some limitations of the standard SRPA model, related to the violation of the stability condition, are not encountered in the DRPA. We also verify in this work that the energy-weighted sum rules are satisfied. The DRPA is applied to low-energy modes and giant resonances in the nucleus O16. We show that the model (i) produ...
Abstract. The Quasi-particle Random Phase Approximation (QRPA) is known to be inade-quate for descri...
We present a new extension of the random-phase approximation method: the quasiboson approximation is...
AbstractRandom Phase Approximation (RPA) is one of the main approximation tools in studying nuclear ...
International audienceWe present an extension of the random-phase approximation (RPA) where the RPA ...
A microscopic formalism is developed that includes the coupling to two particle-hole phonons in the ...
Second random-phase approximation (RPA) calculations with a Skyrme force are performed to describe b...
The Second Random Phase Approximation (SRPA) is a natural extension of RPA where more general excita...
1 tex, 16 figuresInternational audienceWe make use of a subtraction procedure, introduced to overcom...
The Second Random Phase Approximation (SRPA) is a natural extension of the Random Phase Approximatio...
International audienceA subtraction procedure, introduced to overcome double-counting problems in be...
AbstractWe examine the response of closed-shell nuclei using a renormalized interaction, derived wit...
This Ph.D. work falls within the scope of theoretical techniques tailored to the solution of the nuc...
14 pages, 17 figuresThe hole-state random phase approximation (hRPA) and the particle-state random p...
International audienceA systematic analysis of giant quadrupole resonances is performed for several ...
Working within a schematic model and in a boson formalism, we provide a descrip tion of the ground a...
Abstract. The Quasi-particle Random Phase Approximation (QRPA) is known to be inade-quate for descri...
We present a new extension of the random-phase approximation method: the quasiboson approximation is...
AbstractRandom Phase Approximation (RPA) is one of the main approximation tools in studying nuclear ...
International audienceWe present an extension of the random-phase approximation (RPA) where the RPA ...
A microscopic formalism is developed that includes the coupling to two particle-hole phonons in the ...
Second random-phase approximation (RPA) calculations with a Skyrme force are performed to describe b...
The Second Random Phase Approximation (SRPA) is a natural extension of RPA where more general excita...
1 tex, 16 figuresInternational audienceWe make use of a subtraction procedure, introduced to overcom...
The Second Random Phase Approximation (SRPA) is a natural extension of the Random Phase Approximatio...
International audienceA subtraction procedure, introduced to overcome double-counting problems in be...
AbstractWe examine the response of closed-shell nuclei using a renormalized interaction, derived wit...
This Ph.D. work falls within the scope of theoretical techniques tailored to the solution of the nuc...
14 pages, 17 figuresThe hole-state random phase approximation (hRPA) and the particle-state random p...
International audienceA systematic analysis of giant quadrupole resonances is performed for several ...
Working within a schematic model and in a boson formalism, we provide a descrip tion of the ground a...
Abstract. The Quasi-particle Random Phase Approximation (QRPA) is known to be inade-quate for descri...
We present a new extension of the random-phase approximation method: the quasiboson approximation is...
AbstractRandom Phase Approximation (RPA) is one of the main approximation tools in studying nuclear ...