arXiv · 2609.26740
Longitudinal $Λ$ Polarization as a Quantitative Constraint on Geometric Relaxation in Pb-Pb Collisions at $\sqrt{s_{NN}} = 5.36$ TeV
Abstract
Longitudinal hyperon polarization is generated by velocity gradients at decoupling, but its quantitative connection to the evolving collision geometry has remained unclear. We analyze 48 Pb-Pb initial states with (3+1)-dimensional ideal hydrodynamics and the isothermal local-equilibrium spin prescription. The positive kinematic-shear contribution correlates with the freeze-out eccentricity $ε_{2,\mathrm{fo}}$, whereas the magnitude of the negative kinematic-vorticity contribution depends jointly on elliptic flow $v_2$ and the eccentricity survival fraction $S_ε=ε_{2,\mathrm{fo}}/ε_{2,\mathrm{init}}$. Their competition follows $R\simeq0.84(ε_{2,\mathrm{fo}}/v_2)^{0.47}$, and their sum is described by $P_{z,s2}^{\mathrm{ILE}}\simeq0.0404v_2S_ε[0.850(ε_{2,\mathrm{fo}}/v_2)^{1/2}-1]$. This compact relation describes $87\%$ of the variation across the 48-state scan. After its coefficients were fixed, it describes $86\%$ of the variation across 12 newly calculated initial states, including four at the previously unsampled $b_0=0.685$. A proof-of-principle inversion using ALICE polarization data then returns freeze-out eccentricities inside the model fit domain. These results show that longitudinal polarization can constrain the spatial anisotropy remaining at decoupling, complementing the momentum-space information carried by elliptic flow.
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Yilong Xie, Simin Wu, Laszlo P. Csernai. 2026-09-22. Longitudinal $Λ$ Polarization as a Quantitative Constraint on Geometric Relaxation in Pb-Pb Collisions at $\sqrt{s_{NN}} = 5.36$ TeV. https://arxiv.org/abs/2609.26740
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