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Azimuthal asymmetries and the emergence of "collectivity" from multi-particle correlations in high-energy pA collisions

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arxiv 1410.4844 v2 pith:H53WZQWL submitted 2014-10-17 hep-ph nucl-th

classification hep-phnucl-th
keywords azimuthalasymmetriestwo-particlecollisionscomputecontributionscorrelationscumulant
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We show how angular asymmetries $\sim\cos 2\phi$ can arise in dipole scattering at high energies. We illustrate the effects due to anisotropic fluctuations of the saturation momentum of the target with a finite correlation length in the transverse impact parameter plane, i.e.\ from a domain-like structure. We compute the two-particle azimuthal cumulant in this model including both one-particle factorizable as well as genuine two-particle non-factorizable contributions to the two-particle cross section. We also compute the full BBGKY hierarchy for the four-particle azimuthal cumulant and find that only the fully factorizable contribution to $c_2\{4\}$ is negative while all contributions from genuine two, three and four-particle correlations are positive. Our results may provide some qualitative insight into the origin of azimuthal asymmetries in p+Pb collisions at the LHC which reveal a change of sign of $c_2\{4\}$ in high-multiplicity events.

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    hep-ph 2026-07 conditional novelty 6.0 of 10

    The full O(g²) soft-gluon evolution operator in the CGC is constructed; acting on the pure-YM Hamiltonian it reduces it to its free part plus a ρ² coherent background energy.

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