The magnetic mass of transverse gluon, the B-meson weak decay vertex and the triality symmetry of octonion
arXiv:1110.3857 · doi:10.1007/s00601-012-0322-5
Abstract
With an assumption that in the Yang-Mills Lagrangian, a left-handed fermion and a right-handed fermion both expressed as quaternion make an octonion which possesses the triality symmetry, I calculate the magnetic mass of the transverse self-dual gluon from three loop diagram, in which a heavy quark pair is created and two self-dual gluons are interchanged. The magnetic mass of the transverse gluon depends on the mass of the pair created quarks, and in the case of charmed quark pair creation, the magnetic mass becomes approximately equal to at MeV. A possible time-like magnetic gluon mass from two self-dual gluon exchange is derived, and corrections in the B-meson weak decay vertices from the two self-dual gluon exchange are also evaluated.
22 pages, 9 figures
References in corpus (6)
- Modeling the Gluon Propagator in Landau Gauge: Lattice Estimates of Pole Masses and Dimension-Two Condensates
- Determination of the effective strong coupling constant alpha_{s,g_1}(Q^2) from CLAS spin structure function data
- Possible evidence for the breakdown of the CKM-paradigm of CP-violation
- The pressure of deconfined QCD for all temperatures and quark chemical potentials
- Positivity issues for the pinch-technique gluon propagator and their resolution
- Domain Wall Fermion Lattice Simulation in Quaternion Basis