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Nuclear excitations and weak interaction rates at finite temperature (CROSBI ID 169471)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Paar, Nils ; Marketin, Tomislav ; Vretenar, Dario ; Niu, Yifei ; Colo, Gianluca ; Khan, Elias ; Meng, Jie Nuclear excitations and weak interaction rates at finite temperature // Modern physics letters A, 25 (2010), 21/23; 1767-1770. doi: 10.1142/S0217732310000289

Podaci o odgovornosti

Paar, Nils ; Marketin, Tomislav ; Vretenar, Dario ; Niu, Yifei ; Colo, Gianluca ; Khan, Elias ; Meng, Jie

engleski

Nuclear excitations and weak interaction rates at finite temperature

Self-consistent theory frameworks have been introduced for description of excitations in nuclei at finite temperature, based on energy density functionals formulated using i) relativistic mean field Lagrangian with density dependent meson-nucleon vertex functions, and ii) Skyrme-type functionals. Finite temperature random phase approximation (FTRPA) has been employed in description of multipole excitations and charge-exchange modes. It is shown that in the temperature range T = 1–2 MeV additional transition strength appears at low energies due to thermal unblocking of single-particle orbitals close to the Fermi level. Within the finite temperature Hartree-Fock+RPA based on Skyrme functionals, the electron capture cross sections have been studied for target nuclei at temperatures relevant in modeling the supernova evolution.

electron capture; beta decay; weak interaction; giant resonances

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Podaci o izdanju

25 (21/23)

2010.

1767-1770

objavljeno

0217-7323

10.1142/S0217732310000289

Povezanost rada

Fizika

Poveznice
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