An extension of the ideal hadron resonance gas (HRG) model is constructed which includes the attractive and repulsive van der Waals (VDW) interactions between baryons. This VDW-HRG model yields the nuclear liquid-gas transition at low temperatures and high baryon densities. The VDW parameters $a$ and $b$ are fixed by the ground state properties of nuclear matter, and the temperature dependence of various thermodynamic observables at zero chemical potential are calculated within VDW-HRG model. Compared to the ideal HRG model, the inclusion of VDW interactions between baryons leads to a qualitatively different behavior of second and higher moments of fluctuations of conserved charges, in particular in the so-called crossover region $T\sim 140 - 190$ MeV. For many observables this behavior resembles closely the results obtained from lattice QCD simulations. This hadronic model also predicts nontrivial behavior of net-baryon fluctuations in the region of phase diagram probed by heavy-ion collision experiments. These results imply that VDW interactions play a crucial role in thermodynamics of hadron gas. Thus, the commonly performed comparisons of the ideal HRG model with the lattice and heavy-ion data may lead to misconceptions and misleading conclusions.
翻译:理想的有氧共振气体(HRG)模型的延伸已经建成,其中包括男爵之间有吸引力和令人厌恶的范德华相互作用(VDW-HRG)模型。这种VDW-HRG模型在低温和高巴密度条件下产生核液态气体过渡。VDW参数由核物质地面状态特性确定,各种温度动力学观测的零化学潜力的温度依赖性在VDW-HRG模型中计算。与理想的HRG模型相比,将巴龙之间的VDW相互作用导致一种质的不同行为,即保存的电荷发生两次或两次或两次以上波动,特别是在所谓的交叉区域,即$T\sim 140 - 190美元。对于许多观察情况,这种行为与Lattice QCD模拟的结果非常接近。这个过时模型还预测了在通过重离心碰撞实验探测的阶段图区域中的净-巴里波波动的非三联性行为。这些结果表明,VDW相互作用与高压模型和高压数据具有共同的关键作用。