BHLS2, a New Breaking of the HLS Model and its Phenomenology

Abstract

Previous studies have shown that the Hidden Local Symmetry (HLS) Model, supplied with appropriate symmetry breaking, provides an Effective Lagrangian (BHLS) able to encompass a large number of processes within a unified framework. A global fit provides a simultaneous description of the e+ e- annihilation into π+π-, π0γ, η γ, π+π-π0, K+K-, KL KS, the dipion spectrum in the τ decay and other light meson partial widths. Additional breaking schemes extend its scope to spacelike processes within a new framework (BHLS2). The phenomenology previously explored with BHLS is revisited in the BHLS2 context with emphasis on the mass region. It is shown that BHLS2 addresses the close spacelike region covered by NA7 and Fermilab data; also,the Lattice QCD pion form factor is accurately predicted by BHLS2 using fits to annihilation data only. These channels contribution to aμ over the range of validity of BHLS2 is shown to strongly reduce the former BHLS systematics. The uncertainty on aμ th(s< 1.05 GeV) is much improved compared to standard approaches relying on direct integration methods of measured spectra. Using the BHLS2 results, the leading order HVP contribution to the muon anomalous moment is aμHVP-LO= 686.65 3.01 +(+1.16,-0.75)syst. in units of 10-10. Using a conservative estimate for the light--by--light contribution, our evaluation is aμ th= [11\,659\,175.96 4.17 +(+1.16,-0.75)syst.]× 10-10. The 0γ mixing in dispersive and LQCD approaches is discussed and may amount to a shift δ aμ[ππ]γ = +(3.100.31)× 10-10 at LO+NLO, presently treated as additional systematics. Taking this shift into account, aμ th-aμ BNL exhibits a significance not smaller than 3.8 σ.

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