The degree of isospin mixing in the hot compound nucleus Zr-80 has been extracted by statistical-model analysis of the gamma-decay spectrum emitted in fusion reactions Ca-40+Ca-40 at E-beam= 200 MeV and Cl-37+Ca-44 at E-beam= 153 MeV. In the case of Ca-40+Ca-40 reaction an hindrance of first-step gamma-decay is expected because in self-conjugate nuclei the E1 selection rules forbid the decay between states with isospin I=0. The results obtained at finite temperature (T similar to 2 MeV) have been used to extrapolate the degree of mixing at zero temperature.

Isospin mixing at finite temperature in Zr-80

A. Giaz;
2012-01-01

Abstract

The degree of isospin mixing in the hot compound nucleus Zr-80 has been extracted by statistical-model analysis of the gamma-decay spectrum emitted in fusion reactions Ca-40+Ca-40 at E-beam= 200 MeV and Cl-37+Ca-44 at E-beam= 153 MeV. In the case of Ca-40+Ca-40 reaction an hindrance of first-step gamma-decay is expected because in self-conjugate nuclei the E1 selection rules forbid the decay between states with isospin I=0. The results obtained at finite temperature (T similar to 2 MeV) have been used to extrapolate the degree of mixing at zero temperature.
2012
http://www.iop.org/EJ/journal/conf
giant-dipole resonance; isobaric analog resonances; proton-DRIP-line; nuclei; symmetry; states; restoration; excitation; radiation; decay
Corsi, A.; Bracco, A.; Camera, F.; Crespi, F. C. L.; Giaz, A.; Leoni, S.; Montanari, D.; Nicolini, R.; Vandone, V.; Wieland, O.; Benzoni, G.; Blasi, N...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11383/2101571
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