Utility of a hybrid approach to the hadronic vacuum polarization contribution to the muon anomalous magnetic moment

被引:0
|
作者
Davies, C. T. H. [1 ]
Kronfeld, A. S. [2 ]
Lepage, G. P. [3 ]
Mcneile, C. [4 ]
de Water, R. S. Van [2 ]
机构
[1] Univ Glasgow, Sch Phys & Astron, SUPA, Glasgow City G12 8QQ, Scotland
[2] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA
[3] Cornell Univ, Lab Elementary Particle Phys, Ithaca, NY 14853 USA
[4] Univ Plymouth, Ctr Math Sci, Plymouth PL4 8AA, England
基金
美国国家科学基金会; 英国科学技术设施理事会;
关键词
PION FORM-FACTOR; CROSS-SECTION; E(+)E(-); RANGE;
D O I
10.1103/PhysRevD.111.014513
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
An accurate calculation of the leading-order hadronic vacuum polarization (LOHVP) contribution to the anomalous magnetic moment of the muon (a mu) is key to determining whether a discrepancy, suggesting new physics, exists between the Standard Model and experimental results. This calculation can be expressed as an integral over Euclidean time of a current-current correlator G(t), where G(t) can be calculated using lattice QCD or, with dispersion relations, from experimental data for e+e- -* hadrons. The BMW/DMZ collaboration recently presented a hybrid approach in which G(t) is calculated using lattice QCD for most of the contributing t range, but using experimental data for the largest t (lowest energy) region. Here we study the advantages of varying the position t = t1 separating lattice QCD from data-driven contributions. The total LOHVP contribution should be independent of t1, providing both a test of the experimental input and the robustness of the hybrid approach. We use this criterion and a correlated fit to show that Fermilab/HPQCD/MILC lattice QCD results from 2019 strongly favor the CMD-3 cross section data for e+e- -* pi +pi- over a combination of earlier experimental results for this channel. Further, the resulting total LOHVP contribution obtained is consistent with the result obtained by BMW/DMZ, and supports the scenario in which there is no significant discrepancy between the experimental value for a mu and that expected in the Standard Model. We then discuss how improved lattice results in this hybrid approach could provide a more accurate total LOHVP across a wider range of t1 values with an uncertainty that is smaller than that from either lattice QCD or data-driven approaches on their own.
引用
收藏
页数:9
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