Published 2005 | Version v1
Journal article

Fragmentation of giant dipole resonance at finite temperature

Creators

  • 1. Bogoliubov Laboratory of Theoretical Physics, JINR, Dubna (Russian Federation)

Description

It is well known that the main part of a width of a collective giant resonance built on the ground state in heavy nuclei is due to coupling of one-phonon vibrational states with more complex ones like two phonon or two-particle - two-hole. So it seems natural that the same idea was also explored in studying of the formation and dependence on temperature of a width of giant resonances built on a compound nuclear state. The first microscopic calculations of a giant dipole resonance width at finite temperature have demonstrated its weak dependence on T whereas the experimental width Γexp strongly increases up to T≤3 MeV. The observed thermal behaviour of Γexp was attributed mainly to thermal fluctuations of a nuclear shape at finite T . However, further theoretical studies of the problem have shown a strengthening of the GDR spreading with T. We calculate a fragmentation of the giant dipole resonance in hot spherical nuclei within the approach based on the quasiparticle-phonon model extended to finite temperature in with the formalism of thermofield dynamics. The fragmentation of collective giant dipole vibrations at finite T is due to the coupling with 'two-thermal phonon' configurations. The energies and structures of thermal phonon states are calculated from the thermal RPA temperature dependence of the variance σth of a theoretical E1 strength function and the experimental GDR width Γexp in 120Sn. The coupling of thermal phonons is determined by their fermionic structure. The variance σth of the E1 strength function is found continuously increasing with temperature. The main reason of this behavior is the coupling of the dipole phonons with very low-lying particle-particle (hole-hole) thermal phonons. These phonons are noncollective ones and they appear only at T≠0. The calculated T dependence of σth is quite similar to that of the experimental width Γexp in 120Sn and 208Pb

Part of:
16. international school on nuclear physics, neutron physics and nuclear energy. Proceedings

Additional details

Publishing Information

Journal Title
Dokladi na BYaD
Journal Volume
10
Journal Issue
2
Journal Page Range
p. 70-79
ISSN
1310-8727

Conference

Title
16. international school on nuclear physics, neutron physics and nuclear energy
Dates
19-26 Sep 2005
Place
Varna (Bulgaria)

Optional Information

Notes
4 figs., 44 refs.