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Nonrelativistic approaches derived from point-coupling relativistic models

机译:从点耦合相对论模型派生的非相对论方法

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摘要

We construct nonrelativistic versions of relativistic nonlinear hadronic point-coupling models, based on new normalized spinor wave functions after small component reduction. These expansions give us energy density functionals that can be compared to their relativistic counterparts. We show that the agreement between the nonrelativistic limit approach and the Skyrme parametrizations becomes strongly dependent on the incompressibility of each model. We also show that the particular case A=B=0 (Walecka model) leads to the same energy density functional of the Skyrme parametrizations SV and ZR2, while the truncation scheme, up to order ρ3, leads to parametrizations for which σ=1.
机译:我们基于小分量约简后新的归一化自旋旋波函数,构造了相对论非线性强子点耦合模型的非相对论版本。这些扩展为我们提供了可以与相对论相对应的能量密度函数。我们表明,非相对论极限方法与Skyrme参数化之间的一致性变得非常依赖于每个模型的不可压缩性。我们还表明,特殊情况A = B = 0(Walecka模型)导致Skyrme参数SV和ZR2具有相同的能量密度函数,而截断方案(直到ρ3阶)导致σ= 1的参数化。

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