论文标题
Higgs Boson生产中的顶级质量重新归一化方案的NNLO研究不确定性
NNLO study of top-quark mass renormalization scheme uncertainties in Higgs boson production
论文作者
论文摘要
在选择性化方案和尺度量表的选择中的歧义导致了通过Gluon融合的Higgs Boson生产横截面计算中的其他理论不确定性来源。在QCD中以近shell Higgs生产的情况下,这些不确定性在QCD的近距离生产中是主导的,因为Higgs Virtuality $ M_H^*$。在这项工作中,我们研究了与QCD中近代到临时顺序(NNLO)的最高质量定义相关的不确定性。我们在虚拟校正中包括最多三个循环的完整顶级质量依赖性,并在软限制中评估实际贡献,从而获得所谓的软性虚拟(SV)近似值。我们构建了NNLO-SV预测,用于脱壳Higgs玻色子的产生,使壳(OS)和MSBAR方案均重新归一化,并详细研究它们之间的差异。尽管这两个方案之间的差异很大,但我们发现预测始终是在规模不确定性中兼容的。我们还观察到,在增加扰动扩张的顺序时,重新归一化方案之间的差异大大降低。我们分析了这两个方案中扰动系列的收敛质量,并发现在大型不变质量下,MSBAR结果的校正比其OS对应物更大。我们还评论了希格斯玻色子对生产更复杂的情况。
The ambiguity in the choice of a renormalization scheme and scale for the top-quark mass leads to an additional source of theoretical uncertainty in the calculation of the Higgs boson production cross section via gluon fusion. These uncertainties were found to be dominant in the case of off-shell Higgs production at next-to-leading order in QCD for large values of the Higgs virtuality $m_H^*$. In this work, we study the uncertainties related to the top-quark mass definition up to next-to-next-to-leading order (NNLO) in QCD. We include the full top-quark mass dependence up to three loops in the virtual corrections, and evaluate the real contributions in the soft limit, therefore obtaining the so-called soft-virtual (SV) approximation. We construct NNLO-SV predictions for off-shell Higgs boson production renormalizing the top-quark mass within both the on-shell (OS) and the MSbar schemes, and study in detail the differences between them. While the differences between the two schemes are sizeable, we find that the predictions are always compatible within scale uncertainties. We also observe that the difference between renormalization schemes is largely reduced when increasing the order of the perturbative expansion. We analyze the quality of the convergence of the perturbative series in both schemes, and find that at large invariant masses the MSbar results present much larger corrections than their OS counterparts. We also comment on the more complicated case of Higgs boson pair production.