arXiv:nucl-ex/0506006·v1·Nuclear Experiment
Dominant g(9/2)^2 neutron configuration in the 4+1 state of 68Zn based on new g factor measurements
J. Leske (Bonn)🇩🇪 · K.-H. Speidel (Bonn)🇩🇪 · S. Schielke (Bonn)🇩🇪 · J. Gerber (Strasbourg)🇫🇷 · P. Maier-Komor (Munich)🇩🇪 · T. Engeland (Oslo)🇳🇴 · M. Hjorth-Jensen (Oslo)🇳🇴
Abstract
The factor of the state in Zn has been remeasured with improved energy resolution of the detectors used. The value obtained is consistent with the previous result of a negative factor thus confirming the dominant neutron nature of the state. In addition, the accuracy of the factors of the , and states has been improved an d their lifetimes were well reproduced. New large-scale shell model calculations based on a Ni core and an model space yield a theoretical value, . Although the calculated value is small, it cannot fully explain the experimental value, . The magnitude of the deduced B(E2) of the and transition is, however, rather well described. These results demonstrate again the importance of factor measurements for nuclear structure determination s due to their specific sensitivity to detailed proton and neutron components in the nuclear wave functions.
Comments: 7 pages, 3 figs, submitted to PLB