Zero Sound Propagation in Femto-Scale Quantum Liquids
arXiv:1204.3723 · doi:10.4236/jmp.2012.36064
Abstract
Charge equilibration has been recognized as a dominant process at the early stage of low-energy heavy-ion reactions. The production of exotic nuclei is suppressed under the appearance of charge equilibration, in which the proton-neutron ratios of the final reaction products are inevitably averaged. Therefore charge equilibration plays one of the most crucial roles in the synthesis of chemical elements. Focusing on how and when the charge equilibration takes place, the zero-sound propagation in femto-scale quantum liquids is explained.
Review Article to appear in J. Mod. Phys. (accepted). Some revisions are to be made on the publish version
References in corpus (1)
Cited by in corpus (7)
- Nuclear Quantum Many-Body Dynamics: From Collective Vibrations to Heavy-Ion Collisions
- Time-dependent Hartree-Fock calculations for multinucleon transfer processes in Ca+Sn, Ca+Pb, and Ni+Pb reactions
- Conditional recovery of time-reversal symmetry in many nucleus systems
- Nuclear Quantum Many-Body Dynamics: From Collective Vibrations to Heavy-Ion Collisions (2nd edition)
- Solitons in nuclear time-dependent density functional theory
- Energy-dependent existence of soliton in the synthesis of chemical elements
- Time-scaled scenario of low-energy heavy-ion collisions