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Charged-Current Quasielastic (Anti)Neutrino Cross Sections on ~(12)C with Realistic Spectral Functions Including Meson-Exchange Contributions

机译:充电电流准弹性(反)中微弹性(反)下〜(12)C的横截面,具有迈克森交流贡献,包括迈尔森交流贡献

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We present a detailed study of charged-current quasielastic (anti)neutrino scattering cross sections on a ~(12)C target obtained using a spectral function S (p,ε) that gives a scaling function in accordance with the electron scattering data. The spectral function accounts for the nucleon-nucleon (NN) correlations, it has a realistic energy dependence and natural orbitals (NO's) from the Jastrow correlation method are used in its construction. The results are compared with those when NN correlations are not included, namely harmonic-oscillator single-particle wave functions are used instead of NO's. A comparison of the results with recent experiments, as well as to results from the superscaling approach is done. The contribution of two-particle two-hole meson-exchange currents on neutrino-nucleus interactions is also considered within a fully relativistic Fermi gas. The results show a good agreement with the experimental data over the whole range of neutrino energies.
机译:我们在使用频谱函数S(P,ε)获得的〜(12)C目标上的带电电流拟弧体(抗)中子散射横截面的详细研究,该谱函数S(P,ε)根据电子散射数据给出缩放功能。光谱函数占核心核(NN)相关性,它具有来自JASTROW相关方法的实际能量依赖性和自然轨道(NO)用于其结构。将结果与不包括NN相关性时的结果进行比较,即使用谐波振荡器单粒子波函数而不是NO。对近期实验的结果进行比较,并完成了超级方法的结果。在完全相对论的费米气体中也考虑了两种粒子两孔中蒙塞交换电流的贡献。结果表明,与整个中微子能量范围内的实验数据吻合良好。

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