Su Qian-min, Ma Yu-gang, Shen Wen-qing, Wang Jian-song, Cai Xiang-zhou, Fang De-qing. Application of Lattice Gas Model in Heavy Ion Physics[J]. Nuclear Physics Review, 1999, 16(4): 230-236. DOI: 10.11804/NuclPhysRev.16.04.230
Citation:
Su Qian-min, Ma Yu-gang, Shen Wen-qing, Wang Jian-song, Cai Xiang-zhou, Fang De-qing. Application of Lattice Gas Model in Heavy Ion Physics[J]. Nuclear Physics Review, 1999, 16(4): 230-236. DOI: 10.11804/NuclPhysRev.16.04.230
Su Qian-min, Ma Yu-gang, Shen Wen-qing, Wang Jian-song, Cai Xiang-zhou, Fang De-qing. Application of Lattice Gas Model in Heavy Ion Physics[J]. Nuclear Physics Review, 1999, 16(4): 230-236. DOI: 10.11804/NuclPhysRev.16.04.230
Citation:
Su Qian-min, Ma Yu-gang, Shen Wen-qing, Wang Jian-song, Cai Xiang-zhou, Fang De-qing. Application of Lattice Gas Model in Heavy Ion Physics[J]. Nuclear Physics Review, 1999, 16(4): 230-236. DOI: 10.11804/NuclPhysRev.16.04.230
Application of Lattice Gas Model in Heavy Ion Physics
The Lattice Gas Model is introduced to describe the features of phase transition and critical phenomena that take place after the collision between heavy ions at intermediate or high incident energy. New progresses in application into equation of state, phase transition and critical pheonomena, and shortcomings of this model in itself are also presented.