Heavy quark polarization anisotropy as a novel probe of fireball geometry
arXiv:2601.22882 · doi:10.1016/j.physletb.2026.140688
Abstract
We propose a new approach to probe the initial fireball geometry in relativistic heavy-ion collisions using spin polarization. Specifically, we introduce polarization harmonics of open heavy hadrons as a novel observable sensitive to geometric anisotropies. Heavy quarks are produced in early hard scatterings and can acquire spin polarization from the strong, transient electromagnetic fields present at early times. As they propagate through the anisotropic quark-gluon plasma, medium-induced interactions lead to path-length dependent depolarization, imprinting an azimuthally anisotropic polarization pattern. Within the framework of rotational Brownian motion, we show that the resulting polarization harmonics are directly related to the initial spatial eccentricities, thereby establishing heavy-flavor polarization anisotropies as a sensitive and complementary probe of the early-time collision geometry. We present quantitative estimates of the second (elliptic) polarization harmonic associated with the recently observed spin alignment reported by the ALICE Collaboration.
9 pages, 1 figure, published version
References in corpus (12)
- Drag force in AdS/CFT
- Nonperturbative Heavy-Quark Diffusion in the Quark-Gluon Plasma
- Toward a solution to the and puzzle for heavy quarks
- Pattern of Global Spin Alignment of and mesons in Heavy-Ion Collisions
- Heavy Quark Diffusion with Relativistic Langevin Dynamics in the Quark-Gluon Fluid
- Global polarization of and hyperons in Au+Au collisions at = 200 GeV
- Imaging the initial condition of heavy-ion collisions and nuclear structure across the nuclide chart
- Realization of the thermal equilibrium in inhomogeneous magnetic systems by the Landau-Lifshitz-Gilbert equation with stochastic noise, and its dynamical aspects
- Hyperon polarization along the beam direction relative to the second and third harmonic event planes in isobar collisions at = 200 GeV
- Spin alignment measurement of vector mesons produced in high energy collisions
- Collectivity in large and small systems formed in ultrarelativistic collisions
- Exploring Spin Polarization of Heavy Quarks in Magnetic Fields and Hot Medium