arXiv:nucl-ex/9911011·v1·Nuclear Experiment
Entropy in hot ^{161,162}Dy and ^{171,172}Yb nuclei
M. Guttormsen🇳🇴 · A. Bjerve🇳🇴 · M. Hjorth-Jensen🇳🇴 · E. Melby🇳🇴 · J. Rekstad🇳🇴 · A. Schiller🇳🇴 · S. Siem🇳🇴 · A. Belic🇷🇸
Abstract
The density of accessible levels at low spin in the (^3He,\alpha \gamma) reaction has been extracted for the ^{161,162}Dy and ^{171,172}Yb nuclei. The entropy of the even-odd and even-even nuclei has been deduced as a function of excitation energy, and found to reach a maximum of 15 k_B before neutron evaporation. The entropy of one quasi-particle outside an even-even core is found to be 1.70(15) k_B. This quasi-particle picture of hot nuclei is well accounted for within a simple pairing model. The onset of two, four and six quasi-particle excitations in the ^{162}Dy and ^{172}Yb nuclei is discussed and compared to theory. The number of quasi-particles excited per excitation energy is a measure for the ratio of the level energy spacing and the pairing strength.
Comments: 19 pages, 11 figures