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One-loop electroweak corrections for polarized M?ller scattering at different renormalization schemes and conditions

机译:用于偏振M的单环ElectionWeak校正在不同的重整化方案和条件下散射

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摘要

Using two different approaches, we perform detailed calculations of the one-loop (Next-to-Leading Order (NLO)) electroweak radiative corrections to the parity violating e-e- → e-e-(γ) scattering asymmetry. First approach, more classical, relies on calculations "by hand" with reasonable approximations, second approach relies on program packages FeynArts, FormCalc, LoopTools, and FORM. The detailed numerical analysis of the various contributions is provided for a wide range of energies relevant for the ultraprecise 11 GeV MOLLER experiment planned at the JLab, as well as future experiments at the International Linear Collider (ILC). The numerical results obtained within the on-shell renormalization scheme using two different sets of renormalization conditions are in excellent agreement. We also calculate the total NLO correction in the Constrained Differential Renormalization (CDR) scheme. Analysis of the results, along with the increasing experimental precision, shows that it is feasible that the corrections at the Next-to-Next-to-Leading Order (NNLO) level may be important for the next generation of experiments.
机译:使用两种不同的方法,我们执行一个循环(下面的订单(NLO))Electweak辐射校正的详细计算,截图E-e-→E-e-e-(γ)散射不对称。第一种方法,更古典,依赖于具有合理近似的计算“用手”,第二种方法依赖于程序包Feynarts,Formcalc,LoOpols和表格。各种贡献的详细数值分析是针对在JLAB计划的超超挑11 GEV Moller实验的广泛的能量提供了各种能量,以及国际线性撞机(ILC)的未来实验。使用两组不同的重整化条件的壳牌重整化方案中获得的数值结果是非常好的一致性。我们还计算了受限差分重新成型(CDR)方案中的NLO总校正。结果分析结果,随着实验精度的增加,表明,接下来的下一对阶(NNLO)水平的校正可能对下一代实验可能是重要的。

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