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Energy-Dependent Microscopic Optical Potential for p+~9Be Elastic Scattering

机译:P +〜9BE弹性散射的能量依赖性微观光学电位

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The p+~9Be elastic scattering at an energy range up to 200 MeV/nucleon is analyzed using the single-folding model. The density- and isospin-dependent M3Y-Paris nucleon-nucleon (NN) interaction is used for the real part and the NN-scattering amplitude of the high-energy approximation for the imaginary one. The analysis reveals that the cross-section data are reproduced well at energies up to 100 MeV/nucleon by use of the partial-wave expansion. For higher energies, the eikonal approximation give results better than the partial-wave expansion calculations. The volume integrals of the optical-potential parts have systematic energy dependencies, and they are parameterized in empirical formulas.
机译:使用单折叠模型分析能量范围高达200meV /核的P +〜9BE弹性散射。密度和异旋依赖性M3Y-Paris核心核(NN)相互作用用于真实的部分和虚拟的高能逼近的NN散射幅度。该分析表明,通过使用部分波膨胀,横截面数据在高达100meV /核的能量上再现。对于更高的能量,Eikonal近似会使结果优于部分波扩展计算。光电位部件的体积积分具有系统的能量依赖性,并且它们在经验公式中参数化。

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