International audienceThe extended Gutzwiller trajectory approach is presented for the semiclassical description of nuclear collective dynamics, in line with the main topics of the fruitful activity of V.G. Solovjov. Within the Fermi-liquid droplet model, the leptodermous effective surface approximation was applied to calculations of energies, sum rules, and transition densities for the neutron–proton asymmetry of the isovector giant-dipole resonance and found to be in good agreement with the experimental data. By using the Strutinsky shell correctionmethod, the semiclassical collective transport coefficients, such as nuclear inertia, friction, stiffness, and moments of inertia, can be derived beyond the quantum perturbation approximation o...
The lecture contains a survey of nuclear fluiddynamics as derived from the generalized scaling appro...
In the late 1970's Meyer and Miller (MM) [J. Chem. Phys. 70, 3214 (1979)] presented a classical Hami...
An innovative parametrization of nuclear shapes, based on a Fourier expansion of the square distance...
A semiclassical model based on the solution of the Vlasov equation for finite systems with a sharp m...
For low-lying collective excitations we derived the inertia within the semiclassical Gutzwiller appr...
The collective rotation motion is described within the local approximation of the semiclassical Gutz...
'Semiclassical Physics' emphasizes the close connection between the shorter classical periodic orbit...
A summary of recent researches on nuclear dynamics with realistic microscopic quantum approaches is ...
The collective motion of a finite nuclear system is investigated by numerical simulation and by line...
A new semi-classical method, the so-called uniform semiclassical approximation, is described briefly...
International audienceShell corrections to the moment of inertia (MI) are calculated for a Woods–Sax...
This article is devoted to a compilation of recent results about collective vibrations in nuclei. W...
The initial value representation (IVR) of semiclassical (SC) theory is used in conjunction with the ...
A detailed derivation of the collisional widths of collective vibrations is presented in both quanta...
A method is presented which allows one to introduce collective coordinates self-consistently, in dis...
The lecture contains a survey of nuclear fluiddynamics as derived from the generalized scaling appro...
In the late 1970's Meyer and Miller (MM) [J. Chem. Phys. 70, 3214 (1979)] presented a classical Hami...
An innovative parametrization of nuclear shapes, based on a Fourier expansion of the square distance...
A semiclassical model based on the solution of the Vlasov equation for finite systems with a sharp m...
For low-lying collective excitations we derived the inertia within the semiclassical Gutzwiller appr...
The collective rotation motion is described within the local approximation of the semiclassical Gutz...
'Semiclassical Physics' emphasizes the close connection between the shorter classical periodic orbit...
A summary of recent researches on nuclear dynamics with realistic microscopic quantum approaches is ...
The collective motion of a finite nuclear system is investigated by numerical simulation and by line...
A new semi-classical method, the so-called uniform semiclassical approximation, is described briefly...
International audienceShell corrections to the moment of inertia (MI) are calculated for a Woods–Sax...
This article is devoted to a compilation of recent results about collective vibrations in nuclei. W...
The initial value representation (IVR) of semiclassical (SC) theory is used in conjunction with the ...
A detailed derivation of the collisional widths of collective vibrations is presented in both quanta...
A method is presented which allows one to introduce collective coordinates self-consistently, in dis...
The lecture contains a survey of nuclear fluiddynamics as derived from the generalized scaling appro...
In the late 1970's Meyer and Miller (MM) [J. Chem. Phys. 70, 3214 (1979)] presented a classical Hami...
An innovative parametrization of nuclear shapes, based on a Fourier expansion of the square distance...