Lorentz Boosted NN Potential for Few-Body Systems
Lorentz Boosted NN Potential for Few-Body Systems
复制标题
洛伦兹提升了少体系统的神经网络潜力
DOI:
10.1103/physrevc.66.044010
复制
发表时间:
2002
影响因子:
1.4
通讯作者:
C. Elster
中科院分区:
文献类型:
--
作者:
H. Kamada;W. Gloeckle;J. Golak;C. Elster
A Lorentz boosted two-nucleon potential is introduced in the context of equal time relativistic quantum mechanics. The dynamical input for the boosted nucleon-nucleon $(\mathrm{NN})$ potential is based on realistic $\mathrm{NN}$ potentials, which by a suitable scaling of the momenta are transformed into $\mathrm{NN}$ potentials belonging to a relativistic two-nucleon Schr\"odinger equation in the c.m. system. This resulting Lorentz boosted potential is consistent with a previously introduced boosted two-body t matrix. It is applied in relativistic Faddeev equations for the three-nucleon bound state to calculate the ${}^{3}\mathrm{H}$ binding energy. Like in previous calculations the boost effects for the two-body subsystems are repulsive and lower the binding energy.