Abstract:
Questions on the behavior of the graphite melting curve have remainned open during the last fifty years. The process of graphite melting in the pressure range of $2$–$14$ GPa is investigated by the method of molecular dynamics using the model of reactive interatomic potential; the dynamics of melting-front propagation upon crystal superheating is considered, and the melting curve is plotted. The self-diffusion coefficient in the liquid phase is determined for the aforementioned pressure range, and the question of the existence of the liquid–liquid phase transition in carbon is considered.