Decay widths of Isoscalar Giant Monopole Resonances: regular and chaotic dynamics

see the original item page
in the repository's web site and access all digital files if the item*



Decay widths of Isoscalar Giant Monopole Resonances: regular and chaotic dynamics (EN)

Constantoudis, V.
Wambach, J.
Papachristou, P. K.
Diakonos, F. K.
Mavrommatis, E.

info:eu-repo/semantics/article
info:eu-repo/semantics/publishedVersion

2020-01-01


The decay of the Isoscalar Giant Monopole Resonances (IGMR) in the nuclei 208Pb, 144Sm, 116Sn and 90Zr is studied by means of a classical model consisting of several noninteracting nucleons moving in a potential well with an oscillating wall (nuclear surface). The motion of the nuclear surface is described by means of a collective variable which appears explicitly in the Hamiltonian as an additional degree of freedom. The total energy of the system is therefore conserved. Although the particles do not directly interact with each other, their motions are indirectly coupled by means of their interaction with the moving nuclear surface. Despite its simplicity and its purely classical nature, the model reproduces the trend of the experimental data which show that with increasing mass number the decay width decreases. Moreover, with the proper choice of the free parameters, the calculated decay widths are in good agreement with the experimental results. It seems that this agreement is dictated by the corresponding behaviour of the maximum Lyapunov exponent as a function of the system size. (EN)


Annual Symposium of the Hellenic Nuclear Physics Society

English

Hellenic Nuclear Physics Society (HNPS) (EN)


2654-0088
2654-007X
Annual Symposium of the Hellenic Nuclear Physics Society; Τόμ. 15 (2006): HNPS2006; 74-81 (EL)
HNPS Advances in Nuclear Physics; Vol. 15 (2006): HNPS2006; 74-81 (EN)

Πνευματική ιδιοκτησία (c) 2019 P. K. Papachristou, E. Mavrommatis, V. Constantoudis, F. K. Diakonos, J. Wambach (EL)




*Institutions are responsible for keeping their URLs functional (digital file, item page in repository site)