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Parity violation in quasielastic electron-nucleus scattering within the relativistic impulse approximation

机译:相对论脉冲近似中的准弹性电子 - 核散射中的奇偶性违反

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摘要

We study parity violation in quasielastic electron-nucleus scattering using the relativistic impulse approximation. Different fully relativistic approaches have been considered to estimate the effects associated with the final-state interactions. We have computed the parity-violating quasielastic (PVQE) asymmetry and have analyzed its sensitivity to the different ingredients that enter into the description of the reaction mechanism: final-state interactions, nucleon off-shellness effects, and current gauge ambiguities. Particular attention has been paid to the description of the weak neutral current form factors. The PVQE asymmetry is proven to be an excellent observable when the goal is to get precise information on the axial-vector sector of the weak neutral current. Specifically, from measurements of the asymmetry at backward scattering angles good knowledge of the radiative corrections entering in the isovector axial-vector sector can be gained. Finally, scaling properties shown by the interference γ − Z nuclear responses are also analyzed.
机译:我们使用相对论脉冲逼近研究准弹性电子核散射中的奇偶校验违规。已经考虑了不同的完全相对论方法来估计与最终状态相互作用相关的影响。我们已经计算了违反奇偶性的准弹性(PVQE)不对称性,并分析了其对进入反应机理描述的不同成分的敏感性:最终状态相互作用,核子脱壳效应和电流规歧义。特别注意了弱中性电流形状因数的描述。当目标是获得有关弱中性电流的轴向矢量扇区的精确信息时,PVQE不对称被证明是极好的可观察性。具体地,从向后散射角处的不对称性的测量中,可以获得进入等矢量轴向矢量扇区的辐射校正的良好知识。最后,还分析了由干扰γ-Z核响应表示的缩放特性。

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