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A novel treatment of the proton-proton Coulomb force in proton-deuteron Faddeev calculations

机译:质子-氘核Faddeev计算中质子-质子库仑力的新颖处理

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We present resently introduced novel approach to include th e proton-proton (pp) Coulomb force into the momentum space three-nucleon (3N) Faddeev calculations. It is based on a standard formulation for short range forces and relies on a screening of the long-range Coul omb interaction. In order to avoid all uncertainties connected with an application of the partial wave expansion, unsuitable when working with long-range forces, we apply directly the 3-dimensional pp screened Coulomb t-matrix. That main new ingredient, the 3-dimensional screened pp Coulomb t-matrix, is obtained by a numerical sol ution of the 3-dimensional Lippmann-Schwinger (LS) equation. Using a simple dynamical model for the nuclear part of the interaction we demonstrate the feasibility of that approach. The physical elastic pd scattering amplitude has a well de?ned screening limit and does not require renormalisation. Well converged elastic pd cro ss sections are obtained at ?nite screening radii. Also the proton-deuteron (pd) breakup observables can be determ ined from the resulting on-shell 3N amplitudes increasing the screening radius. However, contrary to the pd e lastic scattering, the screening limit exists only after renormalisation of the pp t-matrices.
机译:我们目前正在引入一种新颖的方法,将质子-质子(pp)库仑力包括到动量空间三核(3N)Faddeev计算中。它基于短程力的标准公式,并依赖于对远程库仑相互作用的筛选。为了避免与部分波扩展的应用有关的所有不确定性(不适用于长距离作用力),我们直接应用3维pp筛选的库仑t矩阵。该主要的新成分是3维筛选的pp库仑t矩阵,它是通过3维Lippmann-Schwinger(LS)方程的数值解获得的。使用简单的动力学模型进行相互作用的核部分,我们证明了该方法的可行性。物理弹性pd散射幅度具有明确定义的筛选极限,不需要重新归一化。在有限的筛分半径处获得了很好收敛的弹性PD截面。质子-氘核(pd)分解的观测值也可以从增加的屏蔽半径得出的壳上3N振幅中确定。但是,与pd弹性散射相反,屏蔽极限仅在pp t矩阵重新归一化之后才存在。

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