In this work, we introduce a new approach which is meant to be a first step towards complete self-consistent low-lying spectroscopy of odd nuclei. So far, we essentially limit ourselves to the description of a double-magic core plus an extra nucleon. The model does not contain any free adjustable parameter and is instead based on a Hartree-Fock (HF) description of the particle states in the core, together with self-consistent random-phase approximation (RPA) calculations for the core excitations. We include both collective and noncollective excitations, with proper care of the corrections due to the overlap between them (i.e., due to the nonorthonormality of the basis). As a consequence, with respect to traditional particle-vibration coupli...
The one-dimensional harmonic oscillator in a box problem is used to introduce the concept of a mixed...
The formalism of an equation of motion phonon method is outlined. In even-even nuclei, the method de...
We present results of a calculation of properties of low-lying collective quadrupole states in odd-e...
We introduce a new approach which is meant to be a step towards complete low-lying spectroscopy of o...
We present a self-consistent theory for the description of the spectroscopic properties of odd nucle...
We propose a new theoretical approach to ground and low-energy excited states of nuclei extending th...
A novel method for calculating spectroscopic properties of medium-mass and heavy atomic nuclei with ...
Abstract. The Quasi-particle Random Phase Approximation (QRPA) is known to be inade-quate for descri...
Spectroscopic properties of odd-mass nuclei are studied within the framework of the interacting boso...
We apply an {\it ab-initio} approach to the nuclear structure of odd-mass nuclei straddling $^{48}Ca...
Eigen-states generated by considering particles moving independently in a spherically symmetric pote...
[Background] Single-reference density functional theory is very successful in reproducing bulk nucle...
Background: Predictions of spectroscopic properties of low-lying states are critical for nuclear str...
The couplings between particles and vibrations in atomic nuclei play a key role in the understanding...
We present a novel nuclear energy density functional method to calculate spectroscopic properties of...
The one-dimensional harmonic oscillator in a box problem is used to introduce the concept of a mixed...
The formalism of an equation of motion phonon method is outlined. In even-even nuclei, the method de...
We present results of a calculation of properties of low-lying collective quadrupole states in odd-e...
We introduce a new approach which is meant to be a step towards complete low-lying spectroscopy of o...
We present a self-consistent theory for the description of the spectroscopic properties of odd nucle...
We propose a new theoretical approach to ground and low-energy excited states of nuclei extending th...
A novel method for calculating spectroscopic properties of medium-mass and heavy atomic nuclei with ...
Abstract. The Quasi-particle Random Phase Approximation (QRPA) is known to be inade-quate for descri...
Spectroscopic properties of odd-mass nuclei are studied within the framework of the interacting boso...
We apply an {\it ab-initio} approach to the nuclear structure of odd-mass nuclei straddling $^{48}Ca...
Eigen-states generated by considering particles moving independently in a spherically symmetric pote...
[Background] Single-reference density functional theory is very successful in reproducing bulk nucle...
Background: Predictions of spectroscopic properties of low-lying states are critical for nuclear str...
The couplings between particles and vibrations in atomic nuclei play a key role in the understanding...
We present a novel nuclear energy density functional method to calculate spectroscopic properties of...
The one-dimensional harmonic oscillator in a box problem is used to introduce the concept of a mixed...
The formalism of an equation of motion phonon method is outlined. In even-even nuclei, the method de...
We present results of a calculation of properties of low-lying collective quadrupole states in odd-e...