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Radiative corrections to real and virtual muon Compton scattering revisited

机译:重新讨论真实和虚拟μ子康普顿散射的辐射校正

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摘要

We calculate in closed analytical form the one-photon loop radiative corrections to muon Compton scattering mu(-)gamma --> mu(-)gamma. Ultraviolet and infrared divergences are both treated in dimensional regularization. Infrared finiteness of the (virtual) radiative corrections is achieved (in the standard way) by including soft photon radiation below an energy cut-off lambda. We find that the anomalous magnetic moment alpha/2 pi provides only a very small portion of the full radiative corrections. Furthermore, we extend our calculation of radiative corrections to the muon nucleus bremsstrahlung process (or virtual muon Compton scattering mu(-)gamma(0)* --> mu(-)gamma). These results are particularly relevant for analyzing the COMPASS experiment at CERN in which muon nucleus bremsstrahlung serves to calibrate the Primakoff scattering of high-energy pions off a heavy nucleus with the aim of measuring the pion electric and magnetic polarizabilities. We find agreement with an earlier calculation of these radiative corrections based on a different method.
机译:我们以封闭分析形式计算对μ子康普顿散射mu(-)γ-> mu(-)γ的单光子回路辐射校正。紫外线和红外散度均在尺寸正则化中处理。 (虚拟)辐射校正的红外有限性(通过标准方式)是通过在能量截止λ以下包含软光子辐射来实现的。我们发现异常磁矩alpha / 2 pi仅提供了全部辐射校正的很小一部分。此外,我们将辐射校正的计算扩展到了μ子核致辐射过程(或虚拟μ子康普顿散射mu(-)gamma(0)*-> mu(-)γ)。这些结果对于分析CERN的COMPASS实验尤为重要,在该实验中,mu子原子bre致密物用于校准重能核上高能离子的Primakoff散射,目的是测量离子的电极化和磁极化率。我们发现与基于不同方法的这些辐射校正的早期计算相一致。

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