2023/12/25 by Nan, Manzi, Li, Pengcheng, Wang, Yongjia +2
#FOS: Physical sciences #Nuclear Theory (nucl-th)
paper · doi:10.48550/arxiv.2312.15716
In heavy-ion collisions at intermediate energies, the production and propagation of Δ particles are crucial to understanding the nuclear equation of state and inferring the properties of nuclear matter at high densities. Based on the self-consistent relativistic Boltzmann-Uehling-Uhlenbeck (RBUU) transport theory, by introducing the isovector ρ meson exchange into the effective Lagrangian and adopting the density-dependent coupling constants, the detailed expressions for isospin-dependent in-medium NΔ→ NΔ elastic cross sections σNΔ* have been calculated. The energy and density dependence of the isospin-related σNΔ* as well as the total contributions of σ, ω and ρ meson fields are analyzed. It is found that the total σNΔ* has a sensitive center-of-mass energy dependence at lower energies while exhibiting a slight increase as the center-of-mass energy increases. The isospin effect between different isospin-separated channels weakens as the energy and/or density increases. The isospin effect on the density- and energy-dependent in-medium NΔ elastic cross sections is dominantly caused by the delicate balance of the isovector ρ meson exchange.