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Interplay of dynamical and structure effects in the observables for 12C( p,2 p) near 400 MeV with polarized and unpolarized beams

机译: 12 C( p ,2 p < / ce:italic>)接近400 MeV,带有偏振和非偏振光束

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We investigate the interplay of reaction mechanism and structure effects in the calculated cross sections and polarization observables for the directC12(p,2p)reaction near 400 MeV around the Quasi Free Scattering (QFS) kinematical condition. We do the first consistent comparison between the scattering observables obtained from solutions of three-body Faddeev/Alt-Grassberger-Sandhas (F/AGS) equations and from the Distorted-Wave Impulse Approximation (DWIA). We explore structure effects on the calculated observables, making use of one-nucleon spectroscopic overlaps obtained from the quantum Monte Carlo (QMC) many-body wave functions and using a Woods-Saxon parametrization with parameters adjusted to experimental (p,2p) data. We show, for the first time, that the two reaction formalisms exhibit a distinct behavior depending upon the kinematic conditions. We also show that the agreement between the experimental data and the theoretical results depends on the reaction formalism, kinematical conditions and optical model parametrizations in addition to the spectroscopic factors (SFs). The agreement between the data and predictions using QMC wave functions diminishes prominently for transitions to excited states of11B.
机译:我们研究了在近似自由散射(QFS)运动条件下接近400 MeV的直接C12(p,2p)反应的计算截面和极化可观察物的反应机理和结构效应之间的相互作用。我们对从三体Faddeev / Alt-Grassberger-Sandhas(F / AGS)方程的解和从扭曲波脉冲近似(DWIA)获得的散射可观测值进行了首次一致比较。我们利用从量子蒙特卡洛(QMC)多体波函数获得的单核光谱重叠以及对参数调整为实验(p,2p)的Woods-Saxon参数化方法,探索了对可计算观测值的结构影响。我们第一次表明,这两种反应形式主义根据运动条件表现出不同的行为。我们还表明,实验数据与理论结果之间的一致性还取决于反应形式,运动条件和光学模型参数化以及光谱因子(SF)。对于向11B激发态的跃迁,数据和使用QMC波函数的预测之间的一致性显着降低。

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