Title of article :
Barrier penetration and rotational damping of thermally excited superdeformed nuclei Original Research Article
Author/Authors :
K. Yoshida، نويسنده , , M. Matsuo، نويسنده , , Y.R. Shimizu، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2001
Pages :
38
From page :
85
To page :
122
Abstract :
We construct a microscopic model of thermally excited superdeformed states that describes both the barrier penetration mechanism, leading to the decay-out transitions to normal deformed states, and the rotational damping causing fragmentation of rotational E2 transitions. We describe the barrier penetration by means of a tunneling path in the two-dimensional deformation energy surface, which is calculated with the cranked Nilsson–Strutinsky model. The individual excited superdeformed states and associated E2 transition strengths are calculated by the shell-model diagonalization of the many-particle–many-hole excitations interacting with the delta-type residual two-body force. The effects of the decay-out on the excited superdeformed states are discussed in detail for 152Dy, 143Eu and 192Hg. The model predicts that the decay-out brings about a characteristic decrease in the effective number of excited superdeformed rotational bands.
Keywords :
Warm rotational nuclei , Decay-out of superdeformed nuclei
Journal title :
Nuclear physics A
Serial Year :
2001
Journal title :
Nuclear physics A
Record number :
1195643
Link To Document :
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