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Observation of the critical end point in the phase diagram for hot and dense nuclear matter

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arxiv 1411.7931 v2 pith:GPHNN2T2 submitted 2014-11-28 nucl-ex nucl-th

classification nucl-exnucl-th
keywords criticalphasetextpointanalysisdiagramexcitationfinite-size
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Excitation functions for the Gaussian emission source radii difference ($R^2_{\text{out}} - R^2_{\text{side}}$) obtained from two-pion interferometry measurements in Au+Au ($\sqrt{s_{NN}}= 7.7 - 200$ GeV) and Pb+Pb ($\sqrt{s_{NN}}= 2.76$ TeV) collisions, are studied for a broad range of collision centralities. The observed non-monotonic excitation functions validate the finite-size scaling patterns expected for the deconfinement phase transition and the critical end point (CEP), in the temperature vs. baryon chemical potential ($T,\mu_B$) plane of the nuclear matter phase diagram. A Finite-Size Scaling (FSS) analysis of these data indicate a second order phase transition with the estimates $T^{\text{cep}} \sim 165$~MeV and $\mu_B^{\text{cep}} \sim 95$~MeV for the location of the critical end point. The critical exponents ($\nu \sim 0.66$ and $\gamma \sim 1.2$) extracted via the same FSS analysis, places the CEP in the 3D Ising model universality class.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

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

    nucl-th 2024-12 conditional novelty 6.0 of 10

    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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