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Relativistic Effects in Neutron–Deuteron Elastic Scattering and Breakup

机译:中子-氘核弹性散射和破裂的相对论效应

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We solved the Faddeev equation in a Poincaré invariant model of the three-nucleon system. Two-body interactions are generated so that when they are added to the two-nucleon invariant mass operator (rest energy) the two-nucleon S matrix is identical to the experimental S matrix modeled with a given nucleon–nucleon interaction. Cluster properties of the three-nucleon S-matrix determine how these two-nucleon interactions are embedded in the three-nucleon mass operator. Differences in the predictions of the relativistic and corresponding non-relativistic models for elastic and breakup processes are investigated. Of special interest are effects of relativity on the elastic scattering angular distribution and total cross sections, the lowering of the A y maximum in elastic nucleon-deuteron (Nd) scattering below ≈25 MeV caused by the Wigner spin rotations and the significant changes of the breakup cross sections in certain regions of the phase-space.
机译:我们在三核系统的庞加莱不变模型中求解了Faddeev方程。产生了两体相互作用,因此将它们添加到两个核子不变质量算子(静止能量)时,两个核子S矩阵与通过给定核子-核子相互作用建模的实验S矩阵相同。三核子S矩阵的簇性质决定了这两个核子相互作用如何嵌入三核子质量算子中。研究了弹性和破裂过程的相对论模型和相应非相对论模型的预测差异。特别感兴趣的是相对论对弹性散射角分布和总横截面的影响,由威格纳自旋引起的低于25 MeV的弹性核-氘核(Nd)散射中的A y 最大值的降低旋转和相空间某些区域中破碎截面的显着变化。

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