论文标题
α物质的相图与Skyrme样标量相互作用
Phase diagram of alpha matter with Skyrme-like scalar interaction
论文作者
论文摘要
在平均场近似中研究了由$α$粒子组成的强相互作用物质的状态和相图方程。粒子相互作用通过类似Skyrme的平均场,包含有吸引力的和排斥的术语。通过在$α$物质的基态下拟合已知的结合能量和重子密度的值,从Clark和Wang的微观计算中找到了模型参数。热力学量的$α$物质是在温度和重子密度的广泛域中计算的,可以在中级能量的重离子碰撞中达到。该模型可以预测$α$颗粒的一阶液态气相变和Bose-Einstein凝结。我们列出了沿等性轨迹$α$物质的缩放方差,声速和等距热容量的概况。在温度下的临界点附近预测了强密度波动,大约14〜 \ textrm {mev} $和密度$ n_c \ oftery $ n_c \ oftery $ n_c \ oftery 0.012〜 \ textrm {fm}^{ - 3} $。
The equation of state and phase diagram of strongly interacting matter composed of $α$ particles are studied in the mean-field approximation. The particle interactions are included via a Skyrme-like mean field, containing both attractive and repulsive terms. The model parameters are found by fitting known values of binding energy and baryon density in the ground state of $α$ matter, obtained from microscopic calculations by Clark and Wang. Thermodynamic quantities of $α$ matter are calculated in the broad domains of temperature and baryon density, which can be reached in heavy-ion collisions at intermediate energies. The model predicts both first-order liquid-gas phase transition and Bose-Einstein condensation of $α$ particles. We present the profiles of scaled variance, sound velocity and isochoric heat capacity along the isentropic trajectories of $α$ matter. Strong density fluctuations are predicted in the vicinity of the critical point at temperature $T_c\approx 14~\textrm{MeV}$ and density $n_c\approx 0.012~\textrm{fm}^{-3}$.