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Microscopic Optical Potentials from First Principles

机译:第一原理的微观光学电位

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We construct nucleonic microscopic optical potentials by combining the Green's function approach with the coupled-cluster method for ~(40)Ca and ~(48)Ca. We work with the chiral nucleon-nucleon and three-nucleon interaction NNLO_(sat) which reproduces the charge radii of ~(40)Ca and ~(48)Ca. The overall form of the neutron scattering cross section is reproduced for both nuclei, but the imaginary part of the calculated potential, which reflects the loss of flux in the elastic channel, is negligible. The latter points to many-body correlations that would appear beyond the coupled-cluster truncation level considered in this work. We show that, by artificially increasing the parameter η in the Green's function, practical results can be further improved.
机译:通过将绿色的功能方法与〜(40)CA和〜(48)CA的耦合簇方法相结合,通过将绿色的功能方法与〜(48)CA相结合来构建核微观光学电位。我们使用手性核仁核和三核相互作用NNLO_(SAT),其再现〜(40)Ca和〜(48)Ca的电荷半径。中子散射横截面的整体形式被再现为核,但是计算出的电位的虚部,反映弹性通道中的磁通量损失,可以忽略不计。后者指向许多身体相关性,这些相关性将超出在本工作中考虑的耦合簇截断级别之外。我们表明,通过人为地增加绿色函数中的参数η,可以进一步提高实际结果。

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