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首页> 外文期刊>Physics letters >Hadronization conditions in relativistic nuclear collisions and the QCD pseudo-critical line
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Hadronization conditions in relativistic nuclear collisions and the QCD pseudo-critical line

机译:相对论核碰撞中的强子化条件和QCD伪临界线

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We compare the reconstructed hadronization conditions in relativistic nuclear collisions in the nucleon–nucleon centre-of-mass energy range 4.7–2760 GeV in terms of temperature and baryon-chemical potential with lattice QCD calculations, by using hadronic multiplicities. We obtain hadronization temperatures and baryon chemical potentials with a fit to measured multiplicities by correcting for the effect of post-hadronization rescattering. The post-hadronization modification factors are calculated by means of a coupled hydrodynamical-transport model simulation under the same conditions of approximate isothermal and isochemical decoupling as assumed in the statistical hadronization model fits to the data. The fit quality is considerably better than without rescattering corrections, as already found in previous work. The curvature of the obtained “true” hadronization pseudo-critical line κ is found to be 0.0048 ± 0.0026 , in agreement with lattice QCD estimates; the pseudo-critical temperature at vanishing μ B is found to be 164.3 ± 1.8 ? MeV .
机译:我们通过使用强子多重性,在温度和重子化学势方面,比较了核子-核子质心能量范围为4.7-2760 GeV的相对论核碰撞中的重构强子化条件。通过校正强子化后再散射的影响,我们获得了强子化温度和重子化学势,并与测得的多重度相吻合。通过在耦合强动力学模型拟合的近似等温和等化学解耦的相同条件下,通过耦合流体动力学传输模型模拟,计算出了强铁化后的修正因子。如先前工作中已经发现的那样,拟合质量比没有散射校正的质量要好得多。发现获得的“真实”强子化伪临界线κ的曲率是0.0048±0.0026,与晶格QCD估计相符。在消失时的伪临界温度为164.3±1.8? MeV。

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