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Collective nuclear vibrations and initial state shape fluctuations in central Pb+Pb collisions: resolving the v₂ to v₃ puzzle

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arxiv 2008.07304 v1 pith:4N24T43N submitted 2020-08-17 nucl-th hep-ph

Collective nuclear vibrations and initial state shape fluctuations in central Pb+Pb collisions: resolving the v₂ to v₃ puzzle

classification nucl-th hep-ph
keywords centralcollisionsepsilonnuclearcollectivemomentpuzzlequadrupole
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We have studied, for the first time, the influence of the collective quantum effects in the nuclear wave functions on the azimuthal anisotropy coefficients $\epsilon_{2,3}$ in the central Pb+Pb collisions at the LHC energies. With the help of the energy weighted sum rule we demonstrate that the classical treatment with the Woods-Saxon nuclear density overestimates the mean square quadrupole moment of the $^{208}$Pb nucleus by a factor of $\sim 2.2$. The Monte-Carlo Glauber simulation of the central Pb+Pb collisions accounting for the restriction on the quadrupole moment leads to $\epsilon_2/\epsilon_3\approx 0.8$ which allows to resolve the $v_2$-to-$v_3$ puzzle.

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    Triangular flow four-particle cumulants scale linearly with the fourth moment of octupole deformation, allowing the mean and variance of 238U octupole deformation to be extracted separately.