Cucinotta F A, Khandelwal G S, Townsend L W, Wilson J W
Physics Department, Old Dominion University, Norfolk, VA 23508, USA.
Phys Lett B. 1989 Jun 8;223(2):127-32. doi: 10.1016/0370-2693(89)90226-8.
We show the equivalence of semi-classical solutions to optical model coupled-channel equations derived from Watson's form of the nucleus-nucleus multiple-scattering series to the Glauber multiple-scattering series. A second-order solution to the semi-classical coupled-channel elastic amplitude is shown to be nearly equivalent to a second-order optical-phase-shift approximation to the Glauber amplitude if the densities of all nuclear excited states are approximated by the ground-state density. Using the Jastrow method to model the two-body density we find an average excited-state density to be of negligible importance in the double-scattering region of alpha-alpha scattering.
我们展示了从原子核-原子核多重散射级数的沃森形式推导出来的光学模型耦合通道方程的半经典解与格劳伯多重散射级数的等价性。如果所有核激发态的密度都用基态密度来近似,那么半经典耦合通道弹性振幅的二阶解被证明几乎等同于格劳伯振幅的二阶光学相移近似。使用贾斯特罗方法对两体密度进行建模,我们发现在α-α散射的双散射区域中,平均激发态密度的重要性可以忽略不计。