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arXiv:2609.17486·v1·High Energy Physics — Phenomenology

Rotational Brownian Motion and Spin Alignment in Heavy-Ion Collisions

Bhagyarathi Sahoo · Captain R. Singh

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Abstract

The heavy-quark polarization in ultra-relativistic heavy-ion collisions (HICs) serves as a probe for unfolding the characteristics of deconfined QCD. The present study explores the spin alignment of in the HICs by employing the rotational Brownian motion of charm quarks in the presence of a strong magnetic field. We derive an analytical expression for the polarization of the - pair based on the Fokker-Planck equation under the consideration of spin-vorticity coupling. These polarized - pairs lead to the formation of the at the hadronization surface via the coalescence and fragmentation mechanisms. Correspondingly, we obtain the diagonal element of the spin-density matrix, which quantifies its spin alignment along the chosen quantization axis. Our study provides a microscopic description of heavy-quark spin transport and suggests rotational diffusion as a possible mechanism underlying the observed spin alignment.

Comments: 9 pages, 2 figures