English

Dynamic Calculations of Magnetic Field and Implications on Spin Polarization and Spin Alignment in Heavy Ion Collisions

Nuclear Theory 2023-06-06 v1

Abstract

Magnetic field plays a crucial role in various novel phenomena in heavy-ion collisions. We solve the Maxwell equations numerically in a medium with time-dependent electric conductivity by using the Finite-Difference Time-Domain (FDTD) algorithm. We investigate the time evolution of magnetic fields in two scenarios with different electric conductivities at collision energies ranging from sNN=\sqrt{s_\text{NN}}= 7.7 to 200 GeV. Our results suggest that the magnetic field may not persist long enough to induce a significant splitting between the global spin polarizations of Λ\Lambda and Λˉ\bar{\Lambda} at freeze-out stage. However, our results do not rule out the possibility of the magnetic field influencing the spin (anti-)alignment of vector mesons.

Keywords

Cite

@article{arxiv.2306.02829,
  title  = {Dynamic Calculations of Magnetic Field and Implications on Spin Polarization and Spin Alignment in Heavy Ion Collisions},
  author = {Hui Li and Xiao-Liang Xia and Xu-Guang Huang and Huan Zhong Huang},
  journal= {arXiv preprint arXiv:2306.02829},
  year   = {2023}
}

Comments

Revtex4-2, 7 pages, 2 figures