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Hadronic light-by-light scattering contribution to the muon g-2
作者姓名:A.  Nyffeler
作者单位:Regional Centre for Accelerator-based Particle Physics, Harish-Chandra Research Institute, Chhatnag Road, Jhusi, Allahabad - 211019, India
基金项目:Supported by Funding from the Department of Atomic Energy, Government of India, for the Regional Centre for Acceleratorbased Particle Physics (RECAPP), Harish-Chandra Research Institute
摘    要:We review recent developments concerning the hadronic light-by-light scattering contribution to the anomalous magnetic moment of the muon. We first discuss why fully off-shell hadronic form factors should be used for the evaluation of this contribution to the g- 2. We then reevaluate the numerically dominant pion-exchange contribution in the framework of large-No QCD, using an off-shell pion-photon-photon form factor which fulfills all QCD short-distance constraints, in particular, a new short-distance constraint on the off-shell form factor at the external vertex in g- 2, which relates the form factor to the quark condensate magnetic susceptibility in QCD. Combined with available evaluations of the other contributions to hadronic light-by-light scattering this leads to the new result αμ^LbyL;had= (116±40) × 10^-11, with a conservative error estimate in view of the many still unsolved problems. Some potential ways for further improvements are briefly discussed as well. For the electron we obtain the new estimate αe^LbyL;had= (3.9± 1.3) × 10^-14.

关 键 词:光散射  强子  μ子  量子色动力学  反常磁矩  介子交换  夸克凝聚  μ介子
收稿时间:2010-1-25

Hadronic light-by-light scattering contribution to the muon g- 2
A. Nyffeler.Hadronic light-by-light scattering contribution to the muon g- 2[J].High Energy Physics and Nuclear Physics,2010,34(6):705-711.
Authors:A  Nyffeler
Institution:Regional Centre for Accelerator-based Particle Physics, Harish-Chandra Research Institute, Chhatnag Road, Jhusi, Allahabad - 211019, India
Abstract:muon, anomalous magnetic moment, hadronic contributions, effective field theories, large-No
Keywords:muon  anomalous magnetic moment  hadronic contributions  effective field theories  large-No
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