The isospin effects of Coulomb interaction on the momentum dissipation in the heavy ion collissions at an intermediate energy has been studied carefully within the isospin dependent quantum molecular dynamics model. 利用同位旋相关的量子分子动力学(QMD)模型,研究了中能重离子碰撞过程中的库仑相互作用对于动量耗散的同位旋效应。
Influence of incidence channel condition on isospin fractionation ratio based on the revised isospin-dependent quantum molecular dynamics 改进的QMD模型研究不同入射道条件对同位旋分馏强度的影响
Based on an improved quantum molecular dynamics model the static and dynamic potential in the entrance channel of synthesis of superheavy nuclei are studied. 在改进的量子分子动力学(QMD)模型基础上系统地研究了超重核合成中的入射道静态势和动力学势。
The isospin dependent quantum molecular dynamics model has been further developed by considering shell effect and the fusion mechanism near Coulomb barrier is studied by using the improved model. 通过考虑动力学中的壳效应,对同位旋相关的量子分子动力学(QMD)模型做了进一步改进,并利用改进的量子分子动力学(QMD)模型对近垒熔合机制做了动力学研究。
We studied systematically the reaction dynamics induced by neutron-halo nuclei and proton-halo nuclei within the isospin dependent quantum molecular dynamics, such as the effects of loose bound halo-nuclei on the fragmentation reaction and momentum dissipation for different colliding systems with different beam energies and different impact parameters. 基于同位旋相关量子分子动力学(QMD)研究了中子晕核和质子晕核的核反应动力学,着重研究了松散的晕结构对于重离子碰撞中的碎裂和动量耗散中的特殊作用。