论文标题
MUON异常的磁矩:晶格间距足够小?
The muon anomalous magnetic moment: is the lattice spacing small enough?
论文作者
论文摘要
我们使用$ 2+1+1+交错的费米子(Muon Atramalemos)磁矩贡献了领先顺序的HADRONIC-VACUUM极化(HVP)贡献的轻Quark连接部分的新结果。我们已经对以前的合奏收集了更多的统计数据,并添加了两个新的合奏。这使我们能够显着减少HVP贡献和相关窗口数量的统计错误。我们还以交错的手性扰动理论计算了电流的相关器,从而将电流相关器定义到近代到领先的顺序(NNLO),以便我们可以校正NNLO的有限量,pion-sass sass sossing and tossing and tossing tossing and temblesting效果。我们讨论了NNLO手性扰动理论的适用性,强调它为HVP贡献提供了系统的EFT方法,但不提供短或中间距离窗口的数量。这使得很难评估在文献中广泛考虑的标准中间距离窗口数量上的系统错误。鉴于此,我们研究了一个更长的距离窗口,为此,EFT方法应该更可靠。我们最重要的结论是,晶格间距的新高统计计算明显小于0.06 fm是必不可少的。 MILC和Callat慷慨地提供了我们使用的合奏。
We present new results for the light-quark connected part of the leading order hadronic-vacuum-polarization (HVP) contribution to the muon anomalous magnetic moment, using $2+1+1$ staggered fermions. We have collected more statistics on previous ensembles, and we added two new ensembles. This allows us to reduce statistical errors on the HVP contribution and related window quantities significantly. We also calculated the current-current correlator to next-to-next-to-leading order (NNLO) in staggered chiralperturbation theory, so that we can correct to NNLO for finite-volume, pion-mass mistuning and taste-breaking effects. We discuss the applicability of NNLO chiral perturbation theory, emphasizing that it provides a systematic EFT approach to the HVP contribution, but not to short- or intermediate-distance window quantities. This makes it difficult to assess systematic errors on the standard intermediate-distance window quantity that is now widely considered in the literature. In view of this, we investigate a longer-distance window, for which EFT methods should be more reliable. Our most important conclusion is that new high-statistics computations at lattice spacings significantly smaller than 0.06 fm are indispensable. The ensembles we use have been generously provided by MILC and CalLat.