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Coordinate versus momentum cuts and effects of collective flow on critical fluctuations

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arxiv 2404.00476 v2 pith:4EUSLRSS submitted 2024-03-30 nucl-th hep-ph

classification nucl-thhep-ph
keywords collectivecriticalflowfluctuationsmomentumacceptancesaveragingcoordinate
verification ladder T0 review T1 audit T2 compute T3 formal
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We analyze particle number fluctuations in the crossover region near the critical endpoint of a first-order phase transition by utilizing molecular dynamics simulations of the classical Lennard-Jones fluid. We extend our previous study [V.A. Kuznietsov et al., Phys. Rev. C 105, 044903 (2022)] by incorporating longitudinal collective flow. The scaled variance of particle number distribution inside different coordinate and momentum space acceptances is computed through ensemble averaging and found to agree with earlier results obtained using time averaging, validating the ergodic hypothesis for fluctuation observables. Presence of a sizable collective flow is found to be essential for observing large fluctuations from the critical point in momentum space acceptances. We discuss our findings in the context of heavy-ion collisions.

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Cited by 2 Pith papers

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  1. Excited cluster states: A new source for proton number fluctuations in the high baryon density regime

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    Excited cluster decays raise predicted proton cumulant ratios in a hadron resonance gas at collision energies of 2 to 5 GeV per nucleon pair, with the largest effect on high-order ratios at low energies.

  2. Exploring the QCD phase diagram through correlations and fluctuations

    nucl-th 2025-12 accept novelty 3.0 of 10

    A synthesis of the QCD critical point search: theoretical estimates cluster at T_C≈100–120 MeV, μ_B≈550–650 MeV, and BES-II cumulant data match non-critical baselines above 10 GeV while 7.7–9 GeV deviations remain une...

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