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Measurement of the J/$\psi$ polarization with respect to the event plane in Pb-Pb collisions at the LHC

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arxiv 2204.10171 v2 pith:QVLGFQQS submitted 2022-04-21 nucl-ex hep-ex

classification nucl-exhep-ex
keywords polarizationcollisionscentralitycollisiondecayeventmeasuredmeasurement
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abstract

We study the polarization of inclusive J/$\psi$ produced in Pb$-$Pb collisions at $\sqrt{s_{\rm NN}}=5.02$ TeV at the LHC in the dimuon channel, via the measurement of the angular distribution of its decay products. We perform the study in the rapidity region $2.5<y<4$, for three transverse momentum intervals ($2<p_{\rm T}<4$, $4<p_{\rm T}<6$, $6<p_{\rm T}<10$ GeV/$c$) and as a function of the centrality of the collision for $2<p_{\rm T}<6$ GeV/c. For the first time, the polarization is measured with respect to the event plane of the collision, by considering the angle between the positive-charge decay muon in the J/$\psi$ rest frame and the axis perpendicular to the event-plane vector in the laboratory system. A small transverse polarization is measured, with a significance reaching 3.9$\sigma$ at low $p_{\rm T}$ and for intermediate centrality values. The polarization could be connected with the behaviour of the quark$-$gluon plasma, formed in Pb$-$Pb collisions, as a rotating fluid with large vorticity, as well as with the existence of a strong magnetic field in the early stage of its formation.

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Forward citations

Cited by 7 Pith papers

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    The spin-dependent heavy-quark potential in the quark-gluon plasma is complex, with a channel-dependent imaginary part first extracted from lattice QCD.

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    The curvature of the freeze-out hypersurface induces a tensor spin polarization of vector mesons at leading gradient order, with predicted phi-meson spin alignment around -10^-4 to -10^-3.

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    nucl-th 2025-06 conditional novelty 6.0 of 10

    A new entropy-principle formulation of relativistic spin hydrodynamics yields a modified BMT spin evolution equation and spin-induced transport corrections that map onto inverse and anomalous Hall effects.

  5. The Gilbert Damping Factor of Heavy Quark Spin Polarization in the Magnetic Field

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    The paper derives an expression for the heavy quark Gilbert damping factor from linear response theory and a screened Coulomb potential, finding alpha below 0.1 for charm quarks.

  6. Gluon polarization contribution to the spin alignment of vector mesons from holography

    hep-ph 2025-01 conditional novelty 6.0 of 10

    A soft-wall holographic QCD model with a rotation-dependent gluon field predicts that rotation enhances the spin alignment of phi and rho mesons at high pT while J/psi stays nearly unaffected.

  7. Vector and Tensor Spin Polarization for Vector Bosons at Local Equilibrium

    hep-ph 2024-12 conditional novelty 6.0 of 10

    Vector meson spin alignment at local equilibrium is shown to arise only at second order in thermodynamic gradients, with explicit analytic formulas for the contributing terms.

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