English

On the balance energy and nuclear dynamics in peripheral heavy-ion collisions

Nuclear Theory 2015-05-18 v1

Abstract

We present here the system size dependence of balance energy for semi-central and peripheral collisions using quantum molecular dynamics model. For this study, the reactions of Ne20+Ne20Ne^{20}+Ne^{20}, Ca40+Ca40Ca^{40}+Ca^{40}, Ni58+Ni58Ni^{58}+Ni^{58}, Nb93+Nb93Nb^{93}+Nb^{93}, Xe131+Xe131Xe^{131}+Xe^{131} and Au197+Au197Au^{197}+Au^{197} are simulated at different incident energies and impact parameters. A hard equation of state along with nucleon-nucleon cross-sections between 40 - 55 mb explains the data nicely. Interestingly, balance energy follows a power law Aτ\propto{A^{\tau}} for the mass dependence at all colliding geometries. The power factor τ\tau is close to -1/3 in central collisions whereas it is -2/3 for peripheral collisions suggesting stronger system size dependence at peripheral geometries. This also suggests that in the absence of momentum dependent interactions, Coulomb's interaction plays an exceedingly significant role. These results are further analyzed for nuclear dynamics at the balance point.

Keywords

Cite

@article{arxiv.1003.3135,
  title  = {On the balance energy and nuclear dynamics in peripheral heavy-ion collisions},
  author = {Rajiv Chugh and Rajeev K. Puri},
  journal= {arXiv preprint arXiv:1003.3135},
  year   = {2015}
}

Comments

13 pages, 9 figures Accepted in IJMPE (in press)