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Relativistic finite-nuclear-size corrections to the energy levels in light muonic atoms

机译:相对论的有限核大小校正浅色原子的能量水平

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We consider higher-order finite-nuclear-size (FNS) contributions to the energy levels of light ordinary and muonic hydrogenlike atoms. Relativistic corrections to the leading FNS term have been known in terms of an integration in coordinate space. The related results are model dependent. In the meantime, if the data on the nuclear structure are obtained from electron-nucleus scattering, it is a representation of the electric charge form factor in momentum space rather than the charge density. An example is the case of a proton as a nucleus. Often the electric form factor is presented in terms of a dispersion integral or a Padé approximation.We present explicit results for such representations for leading finite-nuclear-size higher-order (in Zα and in ZαmR_N ) corrections beyond the leading FNS term.
机译:我们考虑高阶有限核大小(FNS)对普通和多余氢化原子的能量水平的贡献。 在坐标空间中的集成方面,对前导FNS术语的相对论校正是已知的。 相关结果是依赖的模型。 同时,如果从电子核散射获得核结构上的数据,则它是动量空间中的电荷形状因子而不是电荷密度的表示。 一个例子是质子作为核的情况。 通常,在色散积分或Padé近似方面呈现电形状因子。我们对超出领先FNS项之外的领先有限核大小的高阶(在Zα和Zα和ZαMR_N中的Zα和ZαMR_N中)校正的这种表示的明确结果。

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