English

Shear-induced spin polarization in heavy-ion collisions

High Energy Physics - Phenomenology 2021-10-04 v1 Nuclear Theory

Abstract

We study the spin polarization generated by the hydrodynamic gradients. In addition to the widely studied thermal vorticity effects, we identify an undiscovered contribution from the fluid shear. This shear-induced polarization (SIP) can be viewed as the fluid analog of strain-induced polarization observed in elastic and nematic materials. We obtain the explicit expression for SIP using the quantum kinetic equation and linear response theory. Based on a realistic hydrodynamic model, we compute the differential spin polarization along both the beam direction z^\hat{z} and the out-plane direction y^\hat{y} in non-central heavy-ion collisions at sNN=200\sqrt{s_{NN}}=200 GeV, including both SIP and thermal vorticity effects. We find that SIP contribution always shows the same azimuthal angle dependence as experimental data and competes with thermal vorticity effects. In the scenario that Λ\Lambda inherits and memorizes the spin polarization of strange quark, SIP wins the competition, and the resulting azimuthal angle dependent spin polarization PyP_y and PzP_z agrees qualitatively with the experimental data.

Keywords

Cite

@article{arxiv.2103.10403,
  title  = {Shear-induced spin polarization in heavy-ion collisions},
  author = {Baochi Fu and Shuai Y. F. Liu and Longgang Pang and Huichao Song and Yi Yin},
  journal= {arXiv preprint arXiv:2103.10403},
  year   = {2021}
}

Comments

6 pages, 3 figures