We propose a general approach to characterise fluctuations of measured cross sections of nuclear giant resonances. Simulated cross sections are obtained from a particular, yet representative self-energy which contains all information about fragmentations. Using a wavelet analysis, we demonstrate the extraction of time scales of cascading decays into configurations of different complexity of the resonance. We argue that the spreading widths of collective excitations in nuclei are determined by the number of fragmentations as seen in the power spectrum. An analytic treatment of the wavelet analysis using a Fourier expansion of the cross section confirms this principle. A simple rule for the relative life times of states associated with hierar...
We propose a general approach to describe spreading widths of monopole, dipole, and quadrupole giant...
We study structure and direct decay of the Giant Monopole Resonance (GMR) at the RPA level using the...
We performed fluctuation analysis by means of the local scaling dimension for the strength function ...
We review the phenomenon of fine structure of nuclear giant resonances and its relation to different...
4 pages, LaTeX format, pc96.sty + 2 eps figures, accepted as: talk at the 8th Joint EPS-APS Internat...
In the present work the phenomenon of fine structure in the region of the isoscalar giant quadrupole...
International audienceOver the past two decades high energy-resolution inelastic proton scattering s...
It is shown that the exponential decrease of the energy spectra of fragments with energy growing, wh...
The phenomenon of fine structure of the Isoscalar Giant Quadrupole Resonance (ISGQR) has been studie...
One of the branches of nuclear structure research that showed a very fast development in the last de...
[eng] We propose a general approach to describe spreading widths of monopole, dipole, and quadrupole...
A method of calculating giant resonance strength functions using Time-Dependent Hartree-Fock techniq...
The dynamics of monopole giant resonances in nuclei is analyzed in the time-dependent relativistic m...
We propose a general approach to describe spreading widths of monopole, dipole, and quadrupole giant...
We study structure and direct decay of the Giant Monopole Resonance (GMR) at the RPA level using the...
We performed fluctuation analysis by means of the local scaling dimension for the strength function ...
We review the phenomenon of fine structure of nuclear giant resonances and its relation to different...
4 pages, LaTeX format, pc96.sty + 2 eps figures, accepted as: talk at the 8th Joint EPS-APS Internat...
In the present work the phenomenon of fine structure in the region of the isoscalar giant quadrupole...
International audienceOver the past two decades high energy-resolution inelastic proton scattering s...
It is shown that the exponential decrease of the energy spectra of fragments with energy growing, wh...
The phenomenon of fine structure of the Isoscalar Giant Quadrupole Resonance (ISGQR) has been studie...
One of the branches of nuclear structure research that showed a very fast development in the last de...
[eng] We propose a general approach to describe spreading widths of monopole, dipole, and quadrupole...
A method of calculating giant resonance strength functions using Time-Dependent Hartree-Fock techniq...
The dynamics of monopole giant resonances in nuclei is analyzed in the time-dependent relativistic m...
We propose a general approach to describe spreading widths of monopole, dipole, and quadrupole giant...
We study structure and direct decay of the Giant Monopole Resonance (GMR) at the RPA level using the...
We performed fluctuation analysis by means of the local scaling dimension for the strength function ...