English

Exotic Collective Excitations at High Spin: Triaxial Rotation and Octupole Condensation

Nuclear Experiment 2009-09-29 v1

Abstract

In this thesis work, two topics, triaxiality and reflection asymmetry, have been discussed. Band structures in 163^{163}Tm were studied in a "thin" target experiment as well as in a DSAM lifetime measurement. Two new excited bands were shown to be characterized by a deformation larger than that of the yrast sequence. These structures have been interpreted as Triaxial Strongly Deformed bands associated with particle-hole excitations, rather than with wobbling. Moreover, the Tilted-Axis Cranking calculations provide a natural explanation for the presence of wobbling bands in the Lu isotopes and their absence in the neighboring Tm, Hf and Ta nuclei. A series of so-called "unsafe" Coulomb excitation experiments as well as one-neutron transfer measurements was carried out to investigate the role of octupole correlations in the 238,240,242^{238,240,242}Pu isotopes. Some striking differences exist between the level scheme and deexcitation patterns seen in 240^{240}Pu, and to a lesser extent in 238^{238}Pu, and those observed in 242^{242}Pu and in many other actinide nuclei such as 232^{232}Th and 238^{238}U, for example. The differences can be linked to the strength of octupole correlations, which are strongest in 240^{240}Pu. Further, all the data find a natural explanation within the recently proposed theoretical framework of octupole condensation.

Keywords

Cite

@article{arxiv.0810.5021,
  title  = {Exotic Collective Excitations at High Spin: Triaxial Rotation and Octupole Condensation},
  author = {Xiaofeng Wang},
  journal= {arXiv preprint arXiv:0810.5021},
  year   = {2009}
}

Comments

Xiaofeng Wang's Ph.D thesis (305 pages), University of Notre Dame, December 2007;, Umesh Garg and Robert V. F. Janssens (advisors)