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首页> 外文期刊>The journal of high energy physics >Complete QED NLO contributions to the reaction e + e ?μ + μ ? γ and their implementation in the event generator PHOKHARA
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Complete QED NLO contributions to the reaction e + e ?μ + μ ? γ and their implementation in the event generator PHOKHARA

机译:完整的QED NLO对反应的贡献<重点类型=“斜体”> E E → <重点类型=“斜体”>μ + <重点类型=“斜体”>μ <上标>? <重点类型=“斜体”> γ及其在事件发生器Phokhara的实施

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A bstract KLOE and Babar have an observed discrepancy of 2% to 5% in the invariant pion pair production cross section. These measurements are based on approximate NLO μ _(+) μ _(?) γ cross section predictions of the Monte Carlo event generator PHOKHARA7.0. In this article, the complete NLO radiative corrections to μ _(+) μ _(?) γ production are calculated and implemented in the Monte Carlo event generator PHOKHARA9.0. Numerical reliability is guaranteed by two independent approaches to the real and the virtual corrections. The novel features include the contribution of pentagon diagrams in the virtual corrections, which form a gauge-invariant set when combined with their box diagram partners. They may contribute to certain distributions at the percent level. Also the real emission was complemented with two-photon final state emission contributions not included in the generator PHOKHARA7.0. We demonstrate that the numerical influence reaches, for realistic charge-averaged experimental setups, not more than 0.1% at KLOE and 0.3% at BaBar energies. As a result, we exclude the approximations in earlier versions of PHOKHARA as origin of the observed experimental discrepancy.
机译:Bstract Kloe和Babar在不变的磁场对生产横截面中观察到的差异为2%至5%。这些测量基于Monte Carlo事件发生器Phokhara7.0的近似NLOμ_(+)μ_(α)γ横截面预测。在本文中,计算并在蒙特卡罗事件发生器Phokhara9.0中计算并实现完整的NLO辐射校正至μ_(+)μ_(α)γ生产。通过两个独立的方法和虚拟校正的独立方法保证了数值可靠性。新颖的特征包括五边形图在虚拟校正中的贡献,它在与其框图合作伙伴组合时形成了仪表不变集。他们可能会促成百分比水平的某些分布。此外,实际排放也与未包含在发电机Phokhara7.0中的双光子最终状态排放捐款。我们表明,对于现实的电荷平均实验设置,数值影响达到,在Kloe的不超过0.1%,在巴布尔能量下0.3%。结果,我们将早期版本的Phokhara中的近似值排除为观察到的实验差异的起源。

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